REVIEW 3 major objections 5 minor 90 references
Geometry of dust rings in protoplanetary disks: the case of LkCa 15
T0 review · 3 major / 5 minor · reviewed 2026-08-15 · deepseek-v4-flash
Pith's one-line read The 69 au ring around LkCa 15 changes shape with observing wavelength, ruling out a single dust population and implying a broad swarm of sub-20-micron grains totaling roughly 100 Earth masses.
desk verdict Useful methodological extension and solid multi-band measurements, but the multiple-population conclusion needs a single-population null fit before it is secure. read the letter →
The pith
A machine-rendered reading of the paper's core claim, the machinery that carries it, and where it could break.
The reading
What carries the argument
The load-bearing object is a geometric toy model of an inclined, axisymmetric Gaussian ring with dust density $\rho = (\Sigma_0/\sqrt{2\pi}\sigma_h)\exp[-(r-R)^2/(2\sigma_r^2) - z^2/(2\sigma_h^2)]$ at constant temperature, observed through a Gaussian beam. From each synthetic image the paper extracts only two azimuthal curves—peak surface brightness and fitted Gaussian radial width as functions of image-plane angle—and compares these with the same extraction from the ALMA images. Projection makes the ansae brighter because the sightline crosses more material and makes the minor axis narrower by foreshortening, so the amplitude and phase of both curves encode three intrinsic parameters: peak perpendicular optical depth $\tau_\perp$, fractional radial width $\sigma_r/r$, and fractional vertical thickness $\sigma_h/r$. The apparent radial width is the new diagnostic: it breaks the degeneracy of earlier brightness-only analyses, and the beam shape must be included because convolution dilutes the already-narrow minor axis more severely.
What would settle it
A high-resolution ALMA Band 9 (0.45 mm) image of the 69 au ring, analyzed with the same azimuthal brightness and width extraction, would discriminate between the scenarios: the small-grain model predicts $\sigma_r/r \approx 0.12$, $\sigma_h/r \approx 0.08$, and $\tau_\perp \gtrsim 1.6$, close to the Band 7 values, whereas a coagulated centimeter-grain disk would appear narrow and thin, with fractional widths near 0.02 and low optical depth.
Extended reading notes
Core claim
The central discovery is that the 69 au ring of LkCa 15 is geometrically different at different observing wavelengths, and this difference demands multiple dust populations. Using only the azimuthal variation of peak brightness and apparent radial width, with a Gaussian ring seen at inclination 50 degrees, the paper measures a peak optical depth of $\tau_\perp \approx 1.6$ at 0.88 mm, $1.1$ at 1.34 mm, and $0.35$ at 3.08 mm, while the fractional radial width shrinks from about 0.121 to 0.078 and the vertical thickness from 0.080 to 0.059. A single grain species has one opacity law and one spatial distribution, so it cannot reproduce three different apparent widths and heights. The two-size interpretation gives a small-grain population ($\lesssim 20\,\mu$m) that is radially broad and vertically thick, comparable to or slightly above the gas scale height, with a total mass near 100 Earth masses—about ten times the mass of the spatially concentrated large-grain population ($\gtrsim 200\,\mu$m). Standard dust coagulation simulations, in which grains quickly grow to centimeter sizes and settle, predict a much narrower and thinner ring, so the observed geometry conflicts with the usual expectation.
Load-bearing premise
The load-bearing assumption is that the ring is axisymmetric, has a constant temperature, and has a bell-shaped (Gaussian) dust distribution in both radius and height with a single dust opacity per band; non-Gaussian vertical structure, intrinsic brightness asymmetries such as shadows or a hot wall, or a radial temperature gradient would bias the inferred optical depths, widths, and heights.
Editorial extensions
If this is right
- When a ring is optically thick at short ALMA bands, brightness asymmetry alone underestimates its height; measuring the azimuthal width variation and solving for optical depth is needed for a reliable height.
- Multi-band observations can reveal spatial segregation of grain sizes even below the beam width, because different bands see different effective ring widths and heights.
- A ring that appears vertically puffy need not be strongly stirred; it may instead be dominated by small grains that are tightly coupled to the gas.
- Coagulation models that quickly convert small grains into centimeter-sized bodies predict much narrower, thinner rings than observed, so the dust-mass budget of such disks must include a large small-grain component.
Reading between the lines
- We infer that applying the same geometric method to other multi-band ALMA rings could show whether large small-grain reservoirs are common; if they are, disk evolution models may need larger dust masses and different effective opacities.
- A direct test is available at shorter wavelengths: at Band 9 (0.45 mm) the small-grain-dominated model predicts an apparent width and height close to the Band 7 values and a still optically thick ring, whereas a centimeter-grain population would look narrow and thin.
- If the inferred 100 Earth masses of small grains is correct, the local dust-to-gas ratio inside the ring may exceed the canonical 0.01, which would affect collision timescales, pressure-bump trapping, and planetesimal formation efficiency; this consequence goes beyond what the paper explicitly computes.
Signed reviews
Editorial analysis
A structured set of objections, weighed in public.
Referee Report
Summary. The paper presents a geometric toy model for an inclined, axisymmetric dust ring with Gaussian radial and vertical density profiles (Eq. 1) and a radiative-transfer intensity prescription that allows for large optical depth (Eq. 2). The central methodological claim is that the azimuthal variation of the peak surface brightness and of the apparent radial width of the ring, after beam convolution, jointly constrain the peak optical depth tau_perp, the fractional radial width sigma_r/r, and the fractional vertical thickness sigma_h/r. The authors apply this pipeline to archival ALMA Band 7, 6, and 3 images of the 69 au ring in LkCa 15, all convolved to a common 60 mas beam, and extract azimuthal brightness and width profiles. The per-band and joint MCMC fits (Table 1) show tau_perp decreasing from about 1.6 at 0.88 mm to 0.35 at 3.08 mm, with sigma_r/r decreasing from 0.121 to 0.078 and sigma_h/r from 0.080 to 0.059. On this basis the authors argue that no single dust population can explain the wavelength-dependent geometry and introduce a two-size model in which broadly distributed small grains (less than about 20 microns) contribute roughly 100 Earth masses and dominate the short-wavelength emission, while more concentrated large grains (greater than about 200 microns) dominate at 3 mm. They discuss implications for settling, stirring, and grain growth and compare with DustPy models.
Significance. If the multi-band morphology is interpreted as intrinsic geometry, the paper makes a significant contribution: it extends the DK21 brightness-asymmetry method to the optically thick regime, adds the radial-width asymmetry as a third observable, and shows that multi-band ALMA data can in principle separate optical depth from geometry without assuming a temperature or opacity law. The modeling is transparent, the MCMC implementation is standard, the use of archival data with a common beam is sensible, and the authors include useful robustness checks including a scattering study (Appendix C) and a DustPy comparison (Appendix D). The measured trends are important regardless of the physical interpretation. However, the headline conclusion that the data 'can only be explained' by multiple grain populations is not yet established, because the paper does not fit the natural null model of a single population with common spatial geometry and a wavelength-dependent optical depth, and the inferred 100 Earth mass small-grain population rests on an approximate effective-Gaussian description of the two-population mixture.
major comments (3)
- [§3.3, Eq. (1), Fig. 2] The central claim that a single dust population cannot explain the observations is not tested against the natural null model. In Table 1 the three bands are fitted independently, so sigma_r/r and sigma_h/r are free to vary; a decrease in these fitted values with wavelength is then interpreted in §3.3 as evidence for multiple populations. But this interpretation is valid only if the true density profile is Gaussian, because the model's radiative transfer already includes the optical-depth broadening shown in Fig. 2. For a non-Gaussian density, the effective Gaussian width of the emission from one population with fixed intrinsic geometry and tau_perp proportional to lambda^-beta would grow toward shorter wavelengths, exactly reproducing the observed trend. The authors themselves identify the Gaussian assumption as one that 'needs to be refined' (footnote 2) and list it among caveats (§4.3). To support the wording 'can only be explained by the presence of multiple grain populations' (Abstract and §3.3), the paper should present a global three-band fit with common sigma_r, sigma_h, and T and a parametric opacity law, and it should ideally allow a flexible (non-Gaussian) density profile so that the null hypothesis is fairly tested. A joint Gaussian fit that forces equal sigma in all bands would not be a fair null test, because it would already be rejected by the disjoint per-band uncertainties.
- [§3.1, Eq. (4)] The width uncertainty is adopted as one third of the beam FWHM without derivation, and this value directly enters the likelihood in Eq. (4) and the reduced chi-squared in Eq. (6) used to constrain the two-size model. Because the quoted confidence intervals in Table 1 and the significance of the cross-band trend depend on these errors, the choice should be justified quantitatively, for example from the azimuthal scatter of the width measurements, from image-plane bootstrap resampling, or from Monte Carlo realizations of the data. The large size of the observed trends suggests that the qualitative conclusions would survive a different choice, but the quantitative claims, in particular the 100 Earth mass small-grain mass and the chi-squared values in Figure 5, need errors that are not set by an unexplained convention.
- [§3.3, Eq. (6), Fig. 5] The effective Gaussian width and height of the two-population mixture are computed as the best Gaussian fit to the sum of two Gaussians, weighted by local optical depth, and these effective values are then compared with the single-Gaussian widths extracted from the ALMA images. This is not the same measurement: the data pipeline fits a Gaussian to the radial brightness profile of the full image at each azimuth after beam convolution, while the model approximation ignores the fact that the radial profile of a two-Gaussian mixture with very different widths is non-Gaussian. The authors acknowledge that the approximation 'may fail when the mixture departs significantly from a single Gaussian' (Section 3.3), which is exactly the regime of their best-fit parameters (sigma_r/r for big grains of about 0.03 versus 0.12 for small grains). The derived mass budget and the chi-squared values in Figure 5 should therefore be validated by generating synthetic images of the two-population model and passing them through the same extraction and fitting pipeline used on the real data.
minor comments (5)
- [Abstract] The phrasing 'the minor axis are foreshortened' should read 'the minor axes are foreshortened'.
- [§3.3] The phrase 'shinning brightly' should be 'shining brightly'.
- [§3.3, Fig. 5d] The SED comparison is a postdiction rather than a validation; because the model was not fitted to the SED and the real disk is inclined and contains multiple rings, panel (d) should be presented as a consistency check rather than as evidence that the model is correct.
- [§3.1] The radial fitting window of ±1.5 beam FWHM is reasonable, but the sensitivity of the fitted widths and heights to this choice should be tested, since truncation of the profile can bias Gaussian dispersion estimates.
- [§3.1] The posterior values of the calibration factors c6 and c7 introduced in the joint fit are not reported; they should appear in Table 1 or in the corner plot in Figure 7.
Circularity Check
No circularity: the geometric parameters are fits to the ALMA images, the two-size model is an explicitly labeled post hoc fit rather than a prediction, and the supporting checks (SED, DustPy, scattered-light literature) are independent.
full rationale
The derivation chain is self-contained. The geometric model (Eqs. 1-2) converts ring parameters (tau_perp, sigma_r/r, sigma_h/r) into azimuthal brightness and width via radiative transfer and beam convolution, and these parameters are then fitted to the ALMA images rather than assumed. The wavelength dependence of the fitted parameters is therefore a measured output, not an input. The two-size model is explicitly fitted to those measured parameters using Eq. 6, with the small-grain mass being an inferred model parameter; the paper does not present this fit as an independent prediction. The SED comparison, DustPy simulation, and comparisons to scattered-light work are external consistency checks. Self-citations such as Qian and Wu (2025) appear only as supporting references and are not load-bearing for the central claims. The absence of an explicit single-population global null fit is a scientific completeness concern, not a circular reduction, so no circular step is identified.
Assumptions & free parameters
free parameters (8)
- T_ring (ring temperature) =
13.0 K (joint fit); 13-15 K single-band
- tau_perp (peak optical depth per band) =
1.6 (Band 7), 1.1 (Band 6), 0.35 (Band 3)
- sigma_r/r (fractional radial width per band) =
0.121 (B7), 0.092 (B6), 0.078 (B3)
- sigma_h/r (fractional vertical height per band) =
0.080 (B7), 0.063 (B6), 0.059 (B3)
- Calibration factors c6, c7 =
~1 (Gaussian prior N(1,0.1))
- two-size model: Sigma_small, Sigma_big =
e.g., 2.6 and 0.28 g/cm^2 for a_big=1 mm
- two-size model: (sigma_r/r)_s, (sigma_r/r)_b, (sigma_h/r)_s, (sigma_h/r)_b =
e.g., 0.12, 0.05, 0.08, 0.04 for a_big=1 mm
- a_big (large grain size) =
not unique, any >200 um (grid 0.1-2 mm)
assumptions (8)
- domain assumption Ring density is Gaussian in radius and height (Eq. 1)
- domain assumption Constant dust temperature across the ring
- domain assumption Constant dust opacity across the ring for each population
- domain assumption Axisymmetric ring with known inclination i=50.2 deg
- domain assumption Gaussian beam with FWHM 60 mas and known shape
- domain assumption Hydrostatic gas scale height h/r = 0.06 (Eq. 5)
- domain assumption DIANA dust opacity model
- ad hoc to paper Effective Gaussian width/height of the two-population mixture is a Gaussian fit to the sum of two Gaussians
Cite this review
Pith. "Pith review of Geometry of dust rings in protoplanetary disks: the case of LkCa 15." pith.science (2026). https://pith.science/paper/XDOO3RBN
@misc{pith2026260806457,
author = {Pith},
title = {Pith review of: Geometry of dust rings in protoplanetary disks: the case of LkCa 15},
year = {2026},
howpublished = {\url{https://pith.science/paper/XDOO3RBN}},
note = {Machine review of arXiv:2608.06457}
}
read the original abstract
Dust properties in proto-planetary disks shape the pathways for planet formation. Here, we present a method to measure these properties in moderately inclined dust rings. Our method exploits the simple geometric fact that, for such a ring, its ansae appear brighter because our line of sight traverses a longer path through the ring material, and appear broader because the minor axis are foreshortened by projection. The resultant patterns of apparent brightness and width can used to constrain three parameters: the intrinsic ring width, its vertical thickness and its optical depth. We apply this method to ALMA archival images of the LkCa 15 disk, in Bands 7, 6 and 3. We find that the optical depth of its main ring drops from 1.6 at 0.89mm to 0.4 at 3mm. Simultaneously, both the ring width and the ring height decrease from about two to one gas scale heights. Such wavelength-dependent morphology can only be explained by the presence of multiple grain populations. If we adopt a simple two-size model, we infer that the ring contains a massive population of small grains (size < 20 micron; total mass ~ 100 earth masses) that are broadly distributed, and a less massive population of large grains (size > 200 micron) that are more spatially concentrated. This large surplus of small grains is not predicted by models of dust coagulation, but it naturally explains the fluffy ring in LkCa 15, and possibly rings in other disks.
Figures
Figures from the paper (6 more)
Reference graph
Works this paper leans on
-
[1]
A simple model for the evolution of the dust population in protoplanetary disks. , keywords =. doi:10.1051/0004-6361/201118136 , archivePrefix =. 1201.5781 , primaryClass =
-
[2]
Dust Settling and Clumping in MRI-turbulent Outer Protoplanetary Disks. , keywords =. doi:10.3847/1538-4357/ac31a7 , archivePrefix =. 2108.10486 , primaryClass =
-
[3]
The Physics of Dust Coagulation and the Structure of Dust Aggregates in Space. , keywords =. doi:10.1086/303996 , adsurl =
-
[4]
The bouncing barrier revisited: Impact on key planet formation processes and observational signatures. , keywords =. doi:10.1051/0004-6361/202347716 , archivePrefix =. 2312.06000 , primaryClass =
-
[5]
Gas temperature structure across transition disk cavities. , keywords =. doi:10.1051/0004-6361/202243229 , archivePrefix =. 2204.03666 , primaryClass =
-
[6]
An archival summary: 15 years of ALMA observations on disks and planet formation
An archival summary: 15 years of ALMA observations on disks and planet formation. arXiv e-prints , keywords =. doi:10.48550/arXiv.2605.30023 , archivePrefix =. 2605.30023 , primaryClass =
-
[7]
The Disk Substructures at High Angular Resolution Project (DSHARP). VII. The Planet-Disk Interactions Interpretation. , keywords =. doi:10.3847/2041-8213/aaf744 , archivePrefix =. 1812.04045 , primaryClass =
-
[8]
Gaps and Rings in an ALMA Survey of Disks in the Taurus Star-forming Region. , keywords =. doi:10.3847/1538-4357/aae8e1 , archivePrefix =. 1810.06044 , primaryClass =
Show all 90 references
-
[9]
The Disk Substructures at High Angular Resolution Project (DSHARP). I. Motivation, Sample, Calibration, and Overview. , keywords =. doi:10.3847/2041-8213/aaf741 , archivePrefix =. 1812.04040 , primaryClass =
-
[10]
The Disk Substructures at High Angular Resolution Project (DSHARP). II. Characteristics of Annular Substructures. , keywords =. doi:10.3847/2041-8213/aaf740 , archivePrefix =. 1812.04041 , primaryClass =
-
[11]
The Open Journal of Astrophysics , keywords =
Detailed Microwave Continuum Spectra from Bright Protoplanetary Disks in Taurus. The Open Journal of Astrophysics , keywords =. doi:10.33232/001c.144268 , archivePrefix =. 2507.21268 , primaryClass =
-
[12]
, keywords =
DustPy: A Python Package for Dust Evolution in Protoplanetary Disks. , keywords =. doi:10.3847/1538-4357/ac7d58 , archivePrefix =. 2207.00322 , primaryClass =
-
[13]
, keywords =
New Constraints on the Dust and Gas Distribution in the LkCa 15 Disk from ALMA. , keywords =. doi:10.3847/1538-4357/ab2dfe , archivePrefix =. 1907.00571 , primaryClass =
1907 arXiv
-
[14]
OpTool: Command-line driven tool for creating complex dust opacities
-
[15]
Consistent dust and gas models for protoplanetary disks. I. Disk shape, dust settling, opacities, and PAHs. , keywords =. doi:10.1051/0004-6361/201526538 , archivePrefix =. 1511.03431 , primaryClass =
-
[16]
, keywords =
Resolving the Planet-hosting Inner Regions of the LkCa 15 Disk. , keywords =. doi:10.3847/2041-8205/828/2/L17 , archivePrefix =. 1608.08642 , primaryClass =
-
[17]
, keywords =
Imaging the LkCa 15 system in polarimetry and total intensity without self-subtraction artefacts. , keywords =. doi:10.1051/0004-6361/202449743 , archivePrefix =. 2512.18439 , primaryClass =
-
[18]
, keywords =
Disentangling the protoplanetary disk gas mass and carbon depletion through combined atomic and molecular tracers. , keywords =. doi:10.1051/0004-6361/202244227 , archivePrefix =. 2209.09286 , primaryClass =
-
[19]
, keywords =
Turbulence in protoplanetary disks: A systematic analysis of dust settling in 33 disks. , keywords =. doi:10.1051/0004-6361/202553822 , archivePrefix =. 2503.05872 , primaryClass =
-
[20]
, keywords =
Puffed-up Inner Rings and Razor-thin Outer Rings in Structured Protoplanetary Disks. , keywords =. doi:10.3847/1538-4357/ae089e , archivePrefix =. 2509.13122 , primaryClass =
-
[21]
, keywords =
Estimate on Dust Scale Height from the ALMA Dust Continuum Image of the HD 163296 Protoplanetary Disk. , keywords =. doi:10.3847/1538-4357/abe5a6 , archivePrefix =. 2102.06209 , primaryClass =
-
[22]
, keywords =
The effect of dust settling on the appearance of protoplanetary disks. , keywords =. doi:10.1051/0004-6361:20040284 , archivePrefix =. astro-ph/0405226 , primaryClass =
-
[23]
, keywords =
The first ALMA survey of protoplanetary discs at 3 mm: demographics of grain growth in the Lupus region. , keywords =. doi:10.1093/mnras/stab1912 , archivePrefix =. 2010.02248 , primaryClass =
2010 arXiv
-
[24]
, keywords =
Spectral Energy Distributions of T Tauri Stars with Passive Circumstellar Disks. , keywords =. doi:10.1086/304869 , archivePrefix =. astro-ph/9706042 , primaryClass =
-
[25]
, keywords =
Inner walls or vortices? Crescent-shaped asymmetries in ALMA observations of protoplanetary discs. , keywords =. doi:10.1093/mnras/stae1534 , archivePrefix =. 2406.14626 , primaryClass =
-
[26]
, keywords =
Dust and Gas in the Disk of HL Tauri: Surface Density, Dust Settling, and Dust-to-gas Ratio. , keywords =. doi:10.3847/0004-637X/816/1/25 , archivePrefix =. 1508.00584 , primaryClass =
-
[27]
, keywords =
Seeing the Unseen: A Method to Detect Unresolved Rings in Protoplanetary Disks. , keywords =. doi:10.3847/1538-4357/ad55c5 , archivePrefix =. 2406.11627 , primaryClass =
-
[28]
, keywords =
A Highly Settled Disk around Oph163131. , keywords =. doi:10.3847/1538-4357/ac5fae , archivePrefix =. 2204.00640 , primaryClass =
-
[29]
Disks around T Tauri Stars with SPHERE (DARTTS-S). I. SPHERE/IRDIS Polarimetric Imaging of Eight Prominent T Tauri Disks. , keywords =. doi:10.3847/1538-4357/aab846 , archivePrefix =. 1803.10882 , primaryClass =
-
[30]
Wind-driven Accretion in Protoplanetary Disks. I. Suppression of the Magnetorotational Instability and Launching of the Magnetocentrifugal Wind. , keywords =. doi:10.1088/0004-637X/769/1/76 , archivePrefix =. 1301.0318 , primaryClass =
-
[31]
, year = 1974, month = sep, volume =
The evolution of viscous discs and the origin of the nebular variables. , year = 1974, month = sep, volume =. doi:10.1093/mnras/168.3.603 , adsurl =
1974 doi
-
[32]
Reviews of Modern Physics , keywords =
Instability, turbulence, and enhanced transport in accretion disks. Reviews of Modern Physics , keywords =. doi:10.1103/RevModPhys.70.1 , adsurl =
-
[33]
, keywords =
Magnetic and vertical shear instabilities in accretion discs. , keywords =. doi:10.1046/j.1365-8711.1998.01118.x10.1111/j.1365-8711.1998.01118.x , adsurl =
1998
-
[34]
, keywords =
Cooling Requirements for the Vertical Shear Instability in Protoplanetary Disks. , keywords =. doi:10.1088/0004-637X/811/1/17 , archivePrefix =. 1505.02163 , primaryClass =
-
[35]
, keywords =
Closed-form expressions for particle relative velocities induced by turbulence. , keywords =. doi:10.1051/0004-6361:20066899 , archivePrefix =. astro-ph/0702303 , primaryClass =
-
[36]
, keywords =
Weak Turbulence in the HD 163296 Protoplanetary Disk Revealed by ALMA CO Observations. , keywords =. doi:10.1088/0004-637X/813/2/99 , archivePrefix =. 1510.01375 , primaryClass =
-
[37]
, keywords =
Measuring turbulence in TW Hydrae with ALMA: methods and limitations. , keywords =. doi:10.1051/0004-6361/201628550 , archivePrefix =. 1606.00005 , primaryClass =
-
[38]
, keywords =
Evidence for non-zero turbulence in the protoplanetary disc around IM Lup. , keywords =. doi:10.1093/mnras/stae1480 , archivePrefix =. 2406.07689 , primaryClass =
-
[39]
, keywords =
Measuring Turbulent Motion in Planet-forming Disks with ALMA: A Detection around DM Tau and Nondetections around MWC 480 and V4046 Sgr. , keywords =. doi:10.3847/1538-4357/ab8cc5 , archivePrefix =. 2004.12176 , primaryClass =
2004 arXiv
-
[40]
, keywords =
Into the thick of it: ALMA 0.45 mm observations of HL Tau at a resolution of 2 au. , keywords =. doi:10.1051/0004-6361/202349046 , archivePrefix =. 2404.04164 , primaryClass =
-
[41]
, keywords =
An Introduction to Dust Evolution and Vertical Transport in Protoplanetary Disks. , keywords =. doi:10.1088/1538-3873/ae05cb , archivePrefix =. 2509.10614 , primaryClass =
-
[42]
, keywords =
Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): PDS 111, an old T Tauri star with a young-looking disk. , keywords =. doi:10.1051/0004-6361/202348555 , archivePrefix =. 2406.04160 , primaryClass =
-
[43]
, keywords =
Direct detection of scattered light gaps in the transitional disk around HD 97048 with VLT/SPHERE. , keywords =. doi:10.1051/0004-6361/201629265 , archivePrefix =. 1609.04027 , primaryClass =
-
[44]
High contrast imaging with VLT/SPHERE
Multiple rings in the transition disk and companion candidates around RX J1615.3-3255. High contrast imaging with VLT/SPHERE. , keywords =. doi:10.1051/0004-6361/201629267 , archivePrefix =. 1610.04038 , primaryClass =
-
[45]
, keywords =
Scaling Relations Associated with Millimeter Continuum Sizes in Protoplanetary Disks. , keywords =. doi:10.3847/1538-4357/aadd9f , archivePrefix =. 1808.10510 , primaryClass =
-
[46]
Protoplanetary Disk Structures in Ophiuchus. II. Extension to Fainter Sources. , keywords =. doi:10.1088/0004-637X/723/2/1241 , archivePrefix =. 1007.5070 , primaryClass =
-
[47]
, keywords =
A millimeter Continuum Size-Luminosity Relationship for Protoplanetary Disks. , keywords =. doi:10.3847/1538-4357/aa7c62 , archivePrefix =. 1706.08977 , primaryClass =
-
[48]
, keywords =
Bouncing Grains Keep Protoplanetary Disks Bright. , keywords =. doi:10.3847/1538-4357/ae17c5 , archivePrefix =. 2507.06298 , primaryClass =
-
[49]
, keywords =
The Ophiuchus DIsk Survey Employing ALMA (ODISEA): Complete Size Distributions for the 100 Brightest Disks across Multiplicity and Spectral Energy Distribution Classes. , keywords =. doi:10.3847/2041-8213/adb03c , archivePrefix =. 2501.15789 , primaryClass =
-
[50]
, keywords =
Small Protoplanetary Disks in the Orion Nebula Cluster and OMC1 with ALMA. , keywords =. doi:10.3847/1538-4357/ac29c2 , archivePrefix =. 2109.14592 , primaryClass =
-
[51]
, keywords =
Measurement of Circumstellar Disk Sizes in the Upper Scorpius OB Association with ALMA. , keywords =. doi:10.3847/1538-4357/aa989d , archivePrefix =. 1711.04045 , primaryClass =
-
[52]
, keywords =
Millimetre spectral indices of transition disks and their relation to the cavity radius. , keywords =. doi:10.1051/0004-6361/201323322 , archivePrefix =. 1402.5778 , primaryClass =
-
[53]
, keywords =
Multi-epoch Direct Imaging and Time-variable Scattered Light Morphology of the HD 163296 Protoplanetary Disk. , keywords =. doi:10.3847/1538-4357/ab0f3b , archivePrefix =. 1811.07785 , primaryClass =
-
[54]
, keywords =
The HD 163296 Circumstellar Disk in Scattered Light: Evidence of Time-Variable Self-Shadowing. , keywords =. doi:10.1086/589629 , archivePrefix =. 0807.1766 , primaryClass =
-
[55]
, keywords =
Shadows Wreak Havoc in Transition Disks. , keywords =. doi:10.3847/1538-4357/ad8233 , archivePrefix =. 2407.09613 , primaryClass =
-
[56]
Is HD 163296 really a Meeus group II disk?
Dust modeling of the combined ALMA and SPHERE datasets of HD 163296. Is HD 163296 really a Meeus group II disk?. , keywords =. doi:10.1051/0004-6361/201732299 , archivePrefix =. 1802.03328 , primaryClass =
-
[57]
, keywords =
The dust subdisk in the protoplanetary nebula. , keywords =. doi:10.1006/icar.1995.1058 , adsurl =
1995
-
[58]
, keywords =
Particle stirring in turbulent gas disks: Including orbital oscillations. , keywords =. doi:10.1016/j.icarus.2007.07.012 , archivePrefix =. 0707.2975 , primaryClass =
2007 arXiv
-
[59]
, keywords =
Streaming Instabilities in Protoplanetary Disks. , keywords =. doi:10.1086/426895 , archivePrefix =. astro-ph/0409263 , primaryClass =
-
[60]
, keywords =
High angular resolution evidence of dust traps from deep ALMA Band 3 observations of LkCa15. , keywords =. doi:10.1093/mnras/staf393 , archivePrefix =. 2503.03336 , primaryClass =
-
[61]
, keywords =
Distribution of solids in the rings of the HD 163296 disk: a multiwavelength study. , keywords =. doi:10.1051/0004-6361/202142303 , archivePrefix =. 2207.01496 , primaryClass =
-
[62]
, keywords =
Spitzer IRS Spectra and Envelope Models of Class I Protostars in Taurus. , keywords =. doi:10.1086/527301 , archivePrefix =. 0711.4038 , primaryClass =
-
[63]
, keywords =
Constraining turbulence in protoplanetary discs using the gap contrast: an application to the DSHARP sample. , keywords =. doi:10.1093/mnras/stad2057 , archivePrefix =. 2307.11150 , primaryClass =
-
[64]
Science China Physics, Mechanics, and Astronomy , keywords =
Millimeter gap contrast as a probe for turbulence level in protoplanetary disks. Science China Physics, Mechanics, and Astronomy , keywords =. doi:10.1007/s11433-022-1982-y , archivePrefix =. 2208.09230 , primaryClass =
1982 arXiv
-
[65]
JWST Imaging of Edge-on Protoplanetary Disks. IV. Mid-infrared Dust Scattering in the HH 30 Disk. , keywords =. doi:10.3847/1538-4357/ad9c6f , archivePrefix =. 2412.07523 , primaryClass =
-
[66]
Observations of edge-on protoplanetary disks with ALMA. I. Results from continuum data. , keywords =. doi:10.1051/0004-6361/202038087 , archivePrefix =. 2008.06518 , primaryClass =
2008 arXiv
-
[67]
, keywords =
A Multi-ringed, Modestly Inclined Protoplanetary Disk around AA Tau. , keywords =. doi:10.3847/1538-4357/aa6c63 , archivePrefix =. 1704.02006 , primaryClass =
-
[68]
exoALMA. IV. Substructures, Asymmetries, and the Faint Outer Disk in Continuum Emission. , keywords =. doi:10.3847/2041-8213/adc438 , archivePrefix =. 2504.18725 , primaryClass =
-
[69]
, keywords =
Chasing Shadows: Rotation of the Azimuthal Asymmetry in the TW Hya Disk. , keywords =. doi:10.3847/1538-4357/835/2/205 , archivePrefix =. 1701.03152 , primaryClass =
-
[70]
, keywords =
The Surprising Evolution of the Shadow on the TW Hya Disk. , keywords =. doi:10.3847/1538-4357/acbdf1 , archivePrefix =. 2305.03611 , primaryClass =
-
[71]
, keywords =
Variable Outer Disk Shadowing around the Dipper Star RXJ1604.3-2130. , keywords =. doi:10.3847/1538-4357/aae824 , archivePrefix =. 1810.05172 , primaryClass =
-
[72]
, keywords =
A Multifrequency ALMA Characterization of Substructures in the GM Aur Protoplanetary Disk. , keywords =. doi:10.3847/1538-4357/ab711e , archivePrefix =. 2001.11040 , primaryClass =
2001 arXiv
-
[73]
The Disk Substructures at High Angular Resolution Project (DSHARP). VI. Dust Trapping in Thin-ringed Protoplanetary Disks. , keywords =. doi:10.3847/2041-8213/aaf742 , archivePrefix =. 1812.04044 , primaryClass =
-
[74]
, keywords =
Observations of highly inclined disks with ALMA: Results from ^ 12 CO gas and continuum observations. , keywords =. doi:10.1051/0004-6361/202659107 , archivePrefix =. 2604.11247 , primaryClass =
-
[75]
, keywords =
ALMA Detection of Dust Trapping around Lagrangian Points in the LkCa 15 Disk. , keywords =. doi:10.3847/2041-8213/ac8b10 , archivePrefix =. 2209.05535 , primaryClass =
-
[76]
, keywords =
Annular substructures in the transition disks around LkCa 15 and J1610. , keywords =. doi:10.1051/0004-6361/202038027 , archivePrefix =. 2005.02712 , primaryClass =
2005 arXiv
-
[77]
Summary of the contents and survey properties
Gaia Data Release 2. Summary of the contents and survey properties. , keywords =. doi:10.1051/0004-6361/201833051 , archivePrefix =. 1804.09365 , primaryClass =
-
[78]
, keywords =
Gas content of transitional disks: a VLT/X-Shooter study of accretion and winds. , keywords =. doi:10.1051/0004-6361/201323318 , archivePrefix =. 1406.1428 , primaryClass =
-
[79]
, keywords =
Dust properties of protoplanetary disks in the Taurus-Auriga star forming region from millimeter wavelengths. , keywords =. doi:10.1051/0004-6361/200913403 , archivePrefix =. 0912.3356 , primaryClass =
-
[80]
The Disk Substructures at High Angular Resolution Project (DSHARP). V. Interpreting ALMA Maps of Protoplanetary Disks in Terms of a Dust Model. , keywords =. doi:10.3847/2041-8213/aaf743 , archivePrefix =. 1812.04043 , primaryClass =
-
[81]
Annual Review of Earth and Planetary Sciences , keywords =
Forming Planetesimals in Solar and Extrasolar Nebulae. Annual Review of Earth and Planetary Sciences , keywords =. doi:10.1146/annurev-earth-040809-152513 , archivePrefix =. 0909.2652 , primaryClass =
-
[82]
, keywords =
Diverse dust vertical height and settling strength conditions in protoplanetary discs. , keywords =. doi:10.1093/mnras/stag882 , archivePrefix =. 2605.06904 , primaryClass =
-
[83]
, keywords =
Differences in the Gas and Dust Distribution in the Transitional Disk of a Sun-like Young Star, PDS 70. , keywords =. doi:10.3847/1538-4357/aaba7c , archivePrefix =. 1804.00529 , primaryClass =
-
[84]
, keywords =
The 2014 ALMA Long Baseline Campaign: First Results from High Angular Resolution Observations toward the HL Tau Region. , keywords =. doi:10.1088/2041-8205/808/1/L3 , archivePrefix =. 1503.02649 , primaryClass =
2014 arXiv
-
[85]
Science , keywords =
A Major Asymmetric Dust Trap in a Transition Disk. Science , keywords =. doi:10.1126/science.1236770 , archivePrefix =. 1306.1768 , primaryClass =
-
[86]
The Disk Substructures at High Angular Resolution Project (DSHARP). IV. Characterizing Substructures and Interactions in Disks around Multiple Star Systems. , keywords =. doi:10.3847/2041-8213/aaf746 , archivePrefix =. 1812.04536 , primaryClass =
-
[87]
RADMC-3D: A multi-purpose radiative transfer tool
-
[88]
, keywords =
Constraints on the Dust Size Distributions in the HD 163296 Disk from the Difference of the Apparent Dust Ring Widths between Two ALMA Bands. , keywords =. doi:10.3847/1538-4357/acf5df , archivePrefix =. 2308.16574 , primaryClass =
-
[89]
, keywords =
emcee: The MCMC Hammer. , keywords =. doi:10.1086/670067 , archivePrefix =. 1202.3665 , primaryClass =
-
[90]
, keywords =
One Solution to the Mass Budget Problem for Planet Formation: Optically Thick Disks with Dust Scattering. , keywords =. doi:10.3847/2041-8213/ab1f8c , archivePrefix =. 1904.02127 , primaryClass =
1904 arXiv
Reviewed August 15, 2026 · model on record in the stance chip above.
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