REVIEW 3 major objections 4 minor 298 references
Using the deepest low-frequency radio images of a galaxy cluster obtained to date, this paper reports the first indication that the magnetic field in Abell 2255 is organized into coherent large-scale patterns—quasi-radial in the halo bridge
Reviewed by Pith at T0; open to challenge. T0 means a machine referee read the full paper against a public rubric. the ladder, T0–T4 →
T0 review · deepseek-v4-flash
2026-08-02 02:45 UTC pith:HYMO7IVZ
load-bearing objection Deepest cluster radio image and a full-cluster SIG topology map, but the coherent-field claim rests on an unquantified assumption; worth refereeing with revisions. the 3 major comments →
The topology of the magnetic field in Abell 2255 out to its virial radius. Results from the LOFAR Galaxy Cluster Ultra-Deep Field
The pith
A machine-rendered reading of the paper's core claim, the machinery that carries it, and where it could break.
Core claim
The central claim is that the magnetic field in Abell 2255 is organized into coherent, region-dependent orientations: quasi-radial (pointing outward from the cluster center) in the radio bridge and spur structures, and quasi-tangential (aligned along the structure) in the radio relics. The central halo shows a broader, less ordered distribution. The authors argue that this pattern traces the dynamical processes of the cluster's ongoing merger: accretion flows stretch the field radially, while shocks compress it tangentially. They support this with a qualitative comparison to a cosmological magnetohydrodynamic simulation of a cluster with a similar major merger, which shows the same sort of s
What carries the argument
The synchrotron intensity gradient (SIG) technique. It assumes that MHD turbulence in the intracluster medium produces eddies elongated along the local magnetic field, so that gradients of synchrotron intensity are preferentially perpendicular to the field. By averaging gradient orientations in sub-blocks and smoothing pseudo-Stokes parameters, the method yields the projected magnetic field direction even where Faraday depolarization makes polarization measurements impossible. It is applied here to a 35-arcsecond-resolution image with discrete sources subtracted, and its robustness to imaging choices is checked by varying the inner uv-cuts used for source subtraction and extended-emission re
Load-bearing premise
The assumption that intensity gradients in the faint diffuse emission trace magnetic field orientation rather than spatial variations of cosmic-ray electron density or projection effects; the paper states the CR-density contribution has not been systematically quantified.
What would settle it
Measure Faraday rotation measures from a dense grid of polarized background sources across the bridges of A2255 at frequencies around 1-4 GHz; if the projected field orientations disagree with the SIG-inferred radial pattern, the claim fails. Alternatively, a cosmic-ray density map from gamma-ray or hard X-ray observations showing that the bridges are dominated by CR gradients would support the alternative interpretation.
If this is right
- The SIG technique can trace cluster magnetic field geometry in regions where Faraday rotation and polarization are unavailable, such as radio halos and faint bridges.
- If the inferred topology is real, cluster magnetic fields are not uniformly tangled but organized in coherent patches of hundreds of kiloparsecs shaped by the cluster's merger and accretion history.
- Ultra-deep low-frequency observations, comparable to those expected from future arrays like SKA-Low, could routinely map magnetized gas in the cosmic web, not just in clusters.
- The detection of a candidate radio relic about 2.7 Mpc east of the cluster center adds a new constraint on the shock structure in A2255's outskirts.
Where Pith is reading between the lines
- If this pattern is generic, SIG maps of merging clusters could be combined with X-ray or Sunyaev-Zel'dovich velocity-field reconstructions to test whether the radial/tangential dichotomy traces the direction of accreting matter.
- The method's unquantified sensitivity to cosmic-ray density gradients could be tested by comparing SIG maps with cosmic-ray tracers (for example, gamma-ray or hard X-ray emission) in clusters where those data exist.
- The qualitative simulation match suggests a quantitative prediction: the orientation-angle distribution in the bridges should statistically track the local velocity field of accreting gas, a prediction testable with the next generation of cosmological MHD simulations.
- The new deep images reveal faint filaments in the central region; these could be followed up with polarization observations to independently verify SIG's field orientation on small scales.
Editorial analysis
A structured set of objections, weighed in public.
Referee Report
Summary. This paper presents 224 h of LOFAR 120–168 MHz observations of Abell 2255, reaching 24 uJy/beam at 7.1"x4.3" resolution, which the authors describe as the deepest low-frequency image of a galaxy cluster obtained to date. After subtracting discrete sources, they apply the synchrotron intensity gradient (SIG) technique to a 35"-resolution image and report that the inferred projected magnetic field is quasi-radial in the halo bridges/extensions and quasi-tangential in the relics, with a broader distribution in the cluster center. They compare these orientations with a cosmological MHD resimulation and with VLA polarization data in the F1–F3 filaments (median alignment measure AM=0.75). The central claim is that this provides the first indication of a coherent, large-scale magnetic field topology across an entire cluster, from core to outskirts.
Significance. If the interpretation holds, this would be an important observational result: a direct, Mpc-scale map of the projected magnetic-field orientation in the ICM, complementary to Faraday rotation studies and unaffected by depolarization. The imaging effort is substantial, the calibration is carefully described, and the robustness tests in Appendix B (median AM~1 across a range of inner uv cuts) are well designed. The independent polarization check in Fig. 9 provides meaningful validation in the central filaments. However, the central claim rests on the SIG assumption that intensity gradients trace magnetic-field orientation rather than cosmic-ray (CR) spatial distribution, a limitation that the paper explicitly leaves unquantified (Sec. 4.1). The supporting simulation also assumes CR emissivity proportional to n_e, so it cannot test the CR-gradient alternative. The result is therefore promising and timely, but the Mpc-scale coherent-topology claim is not yet fully secured.
major comments (3)
- [Sec. 4.1] The foundational assumption of SIG as applied here—that synchrotron intensity gradients are dominated by magnetic-field orientation—is explicitly conceded to be unquantified with respect to CR spatial variations. The text states that CR density 'could, in principle, also contribute to the observed gradients' and that 'this effect has not yet been systematically quantified.' This is particularly concerning for the faint bridges and outskirts, where the surface brightness is low, CR injection at shocks and transport can produce large spatial contrasts, and morphological gradients of the emission itself may dominate. The quasi-radial and quasi-tangential pattern reported in Figs. 6–7, and the related central claim in the abstract, therefore require a quantitative test of this contamination. I recommend either post-processing a simulation with a separately evolving CR population or construct
- [Sec. 5, Fig. 10] The cosmological simulation comparison projects the magnetic field weighted by P_R = n_e B^2, i.e., it implicitly assumes the synchrotron emissivity is proportional to the thermal electron density. This cannot validate the SIG interpretation against CR-density gradients because a spatially varying CR distribution—not simply tied to n_e—is precisely the alternative hypothesis. In addition, the comparison is only qualitative ('qualitative resemblance'); no quantitative AM or similar metric is computed for the simulated field orientations. A quantitative synthetic-observation test, comparing the true projected B orientation with the SIG-recovered orientation in the simulation, would significantly strengthen the claim.
- [Sec. 4.2, Fig. 9] The independent polarization validation is limited to the F1–F3 filaments in the cluster center. The main new claims concern the bridges and relics, for which no independent polarization data are presented. The polarization comparison itself shows a clear mismatch in part of F1 when the bright 'T-bone' AGN dominates the local gradients, demonstrating that the method can be strongly affected by non-ICM surface-brightness structure. This raises the concern that the bridge/relic orientations could be contaminated by residual source-subtraction artifacts or by intrinsic brightness gradients of the diffuse emission. I request a null or bootstrap test—e.g., randomizing intensities within the regions or using synthetic gradients—to quantify the statistical significance of the reported radial/tangential dichotomy.
minor comments (4)
- [Sec. 4.1, Eq. (1)] The finite-difference expressions appear to be missing parentheses: ∇x I(x,y)=I(x+δx,y)−I(x,y)/δx should read [I(x+δx,y)−I(x,y)]/δx, with the analogous correction for ∇y I. As written, only I(x,y) is divided by δx.
- [Fig. 4 caption] The caption says 'The displayed FoVs are 45, 65, and 100 arcmin2.' This should presumably be 'arcmin' or 'arcmin × arcmin' to describe a linear field of view, not an area; the current wording is ambiguous.
- [Sec. 5] The statement that the initial magnetic seed field is 'B0 = 0.3 nG in all directions' is slightly unclear. It would help to state explicitly that the field is uniformly seeded in the simulation volume with a constant vector (or with equal rms components) and to note whether this choice affects the resulting topology.
- [Fig. 5] The line integral convolution visualization is informative, but no parameters (e.g., LIC kernel length) are given. A brief description in the caption or text would aid reproducibility.
Circularity Check
The large-scale 'B topology' is, by Eq. (3), the tangent of the input intensity contours; the radial/tangential pattern in bridges and relics is therefore built into the method rather than independently measured.
specific steps
-
self definitional
[Sec. 4.1, Eqs. (1)-(3); Sec. 4.2, Fig. 7]
"The final projected magnetic field direction inferred with the SIG method is then obtained as ψ_B(x,y)=ψ_g(x,y)+π/2, reflecting the perpendicular alignment between synchrotron gradients and magnetic field lines expected in the theoretical framework outlined above."
ψ_g is the direction of the spatial gradient of the observed intensity map (Eq. 1). Rotating by π/2 makes ψ_B tangent to the iso-intensity contours of that same map. Hence, for any elongated emission feature, the 'inferred magnetic field' is by construction parallel to the feature's long axis. The regions selected as bridges/extensions are radial protuberances of the halo and the relics are tangentially elongated arcs; the paper's result that B is quasi-radial in the former and quasi-tangential in the latter (Sec. 4.2, Fig. 7) is therefore already encoded in the morphology used to define those regions. It is a coordinate transform of the input radio image, not an independent measurement of B. The only non-tautological content is the assumption that the intensity-gradient direction is contr
full rationale
The paper's central claim—a coherent, large-scale magnetic-field topology across A2255—is obtained by applying the SIG method, whose output is defined as the intensity-gradient direction rotated by 90° (Eq. 3). Since the gradient direction of an elongated radio structure is perpendicular to its long axis, the inferred B field necessarily lies along the elongation of that structure. The paper then finds exactly this: bridges (radially elongated) show quasi-radial B and relics (tangentially elongated) show quasi-tangential B. This part of the derivation reduces by construction to the input morphology and is the main circular element. The circularity is only partial. The method receives independent support from the comparison with VLA polarization in the F1-F3 filaments, where the median alignment measure is AM=0.75 (Sec. 5, Fig. 9), showing that in at least those regions the gradient-to-B mapping is not purely definitional. Also, the inner-uvcut robustness tests (Appendix B.2) demonstrate that the SIG maps are stable against imaging choices, which strengthens the empirical content. A further limitation, not by itself a circular step, is the acknowledged possibility that cosmic-ray density variations contribute to the observed intensity gradients (Sec. 4.1: 'the latter could, in principle, also contribute to the observed gradients' and 'this effect has not yet been systematically quantified'). The supporting cosmological simulation weights the projected magnetic field by P_R = n_e B^2, i.e., it assumes CR emissivity follows the thermal density, so that simulation cannot test the CR-contamination alternative. This weakens the independent force of the simulation comparison, but the simulation is a forward MHD model rather than a refit of the observed B map. Overall, the paper contains a real, load-bearing definitional reduction for the large-scale topology claim, but it is partially offset by the polarization check and the robustness analysis. A score of 6 reflects that one of the central 'findings' (radial versus tangential B by region) is largely imposed by the estimator's construction, while the work still contains some independent observational evidence.
Axiom & Free-Parameter Ledger
free parameters (5)
- SIG sub-block size =
20 × 20 pixels
- Gaussian smoothing kernel FWHM =
equal to sub-block size (20 pixels)
- Intensity threshold =
3σ_rms
- Reference imaging resolution =
35″ circular beam (≈53 kpc)
- Inner uv cut for subtraction/imaging =
5000λ (subtraction), 60λ (imaging)
axioms (5)
- domain assumption MHD turbulence in the ICM is super-Alfvénic with anisotropic cascade; intensity gradients are perpendicular to the local magnetic field
- domain assumption Synchrotron emissivity correlates with magnetic field so gradients trace B rather than cosmic-ray spatial distribution
- domain assumption Line-of-sight averaging preserves statistical alignment between SIG and B
- domain assumption The Enzo cosmological MHD resimulation of a Coma-like cluster is representative of A2255's magnetic field topology
- standard math Standard ΛCDM cosmology with H0=70, Ωm=0.3, ΩΛ=0.7
read the original abstract
We present the LOFAR Galaxy Cluster Ultra-Deep Field, in which 336 h of LOFAR observations at 120$-$168 MHz have been collected on the nearby ($z=0.080$) cluster Abell 2255. This massive and merging system is known to host spectacular radio emission from both cluster galaxies and the intracluster medium. Previous LOFAR observations revealed pervasive diffuse synchrotron emission extending from the cluster center to its dynamically active outskirts, tracing relativistic electrons propagating in large-scale magnetic fields. In this work, we present a set of new ultra-deep images at the central frequency of 144 MHz based on the 224 h of data with the best quality, which reach a sensitivity of 24 $\mu$Jy beam$^{-1}$ at 7.1" $\times$ 4.3" resolution. These images represent the deepest radio observations of a galaxy cluster obtained to date and provide a glimpse of what should be routinely observed in clusters with SKA-Low in the near future. Using these data, we investigate the topology of the cluster magnetic field out to its virial radius by applying the synchrotron intensity gradient technique. We find that the inferred magnetic field exhibits preferential orientations in distinct regions of the cluster, such as in the radio halo extensions (bridges) and in the relics, suggesting that the dynamics of the cluster formation process is shaping the large-scale magnetic field. This interpretation is supported by the comparison with the magnetic field orientation obtained from cosmological magnetohydrodynamic simulations. This work provides the first indication of a coherent, large-scale magnetic field topology across an entire galaxy cluster, from core to outskirts, and demonstrates the unique power of ultra-deep, low-frequency observations to trace the structure of cluster magnetic fields on megaparsec scales, thereby probing the magnetization of the large-scale structure of the Universe.
Figures
Reference graph
Works this paper leans on
-
[1]
The Science of the Einstein Telescope , author =. J. Cosmol. Astropart. Phys. , volume =. doi:10.1088/1475-7516/2026/03/081 , keywords =. 2503.12263 , primaryclass =
Pith/arXiv arXiv 2026
-
[2]
Shear-Selected Clusters from the Deep Lens Survey. III. Masses from Weak Lensing , author =. Astrophys. J. , volume =. doi:10.1088/0004-637X/702/1/603 , keywords =. 0904.2185 , pages =
-
[3]
CMB-S4 Science Book, First Edition , author =. arXiv e-prints , number =. doi:10.48550/arXiv.1610.02743 , keywords =. 1610.02743 , primaryclass =
-
[4]
CMB-S4 Science Case, Reference Design, and Project Plan , author =. arXiv e-prints , number =. doi:10.48550/arXiv.1907.04473 , keywords =. 1907.04473 , primaryclass =
- [5]
- [6]
-
[7]
Constraints on the Thermal Contents of the X-Ray Cavities of Cluster MS 0735.6+7421 with Sunyaev ndash Zel rsquo dovich Effect Observations , author =. Astrophys. J. , volume =. doi:10.3847/1538-4357/aaf888 , keywords =
-
[8]
Constraints on Axion-like Particles with the Perseus Galaxy Cluster with MAGIC , author =. Phys. Dark Universe , volume =. doi:10.1016/j.dark.2024.101425 , keywords =. 2401.07798 , pages =
arXiv 2024
-
[9]
Prospects for ensuremath gamma -Ray Observations of the Perseus Galaxy Cluster with the Cherenkov Telescope Array , author =. J. Cosmol. Astropart. Phys. , volume =. doi:10.1088/1475-7516/2024/10/004 , keywords =. 2309.03712 , pages =
Pith/arXiv arXiv 2024
-
[10]
, author =
The Distribution of Rich Clusters of Galaxies. , author =. Astrophys. J. Suppl. , volume =
-
[11]
Clustering of Galaxies , author =. Astron. Astrophys. Rev. , volume =
-
[12]
A Catalog of Rich Clusters of Galaxies , author =. Astrophys. J. Suppl. , volume =. doi:10.1086/191333 , keywords =
-
[13]
The Simons Observatory: Science Goals and Forecasts for the Enhanced Large Aperture Telescope , author =. J. Cosmol. Astropart. Phys. , volume =. doi:10.1088/1475-7516/2025/08/034 , keywords =. 2503.00636 , primaryclass =
Pith/arXiv arXiv 2025
-
[14]
The Fourteenth Data Release of the Sloan Digital Sky Survey: First Spectroscopic Data from the Extended Baryon Oscillation Spectroscopic Survey and from the Second Phase of the Apache Point Observatory Galactic Evolution Experiment , author =. Astrophys. J. Suppl. , volume =. doi:10.3847/1538-4365/aa9e8a , keywords =. 1707.09322 , pages =
-
[15]
Parametric Strong Lensing Model of the Galaxy Cluster Abell 2390 from Euclid and MUSE Observations , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/202556396 , keywords =. 2510.17192 , primaryclass =
-
[16]
Non-Thermal Sunyaev-Zeldovich Signal from Radio Galaxy Lobes , author =. Mon. Not. R. Astron. Soc. , volume =. doi:10.1093/mnras/stab810 , keywords =. 2009.03440 , pages =
Pith/arXiv arXiv 2009
-
[17]
Critical Magnetic Reynolds Number of the Turbulent Dynamo in Collisionless Plasmas , author =. Mon. Not. R. Astron. Soc. , volume =. doi:10.1093/mnras/stad3967 , keywords =. 2401.08499 , pages =
-
[18]
GeV Gamma-Ray Flux Upper Limits from Clusters of Galaxies , author =. Astrophys. J. Lett. , volume =. doi:10.1088/2041-8205/717/1/L71 , keywords =. 1006.0748 , pages =
Pith/arXiv arXiv 2041
-
[19]
Search for Cosmic-Ray-Induced Gamma-Ray Emission in Galaxy Clusters , author =. Astrophys. J. , volume =. doi:10.1088/0004-637X/787/1/18 , keywords =. 1308.5654 , pages =
-
[20]
Search for Gamma-Ray Emission from the Coma Cluster with Six Years of Fermi-LAT Data , author =. Astrophys. J. , volume =. doi:10.3847/0004-637X/819/2/149 , keywords =. 1507.08995 , pages =
-
[21]
Simulations of the Effects of Stripping and Accretion on Galaxy Haloes in Clusters , author =. Mon. Not. R. Astron. Soc. , volume =. doi:10.1046/j.1365-8711.2003.06504.x , keywords =. astro-ph/0302322 , pages =
arXiv 2003
-
[22]
High Angular Resolution Sunyaev-Zel'dovich Observations of MACS J1423.8+2404 with NIKA: Multiwavelength Analysis , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201527616 , keywords =. 1510.06674 , pages =
-
[23]
Mapping the Hot Gas Temperature in Galaxy Clusters Using X-Ray and Sunyaev-Zel'dovich Imaging , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201629810 , keywords =. 1706.10230 , pages =
-
[24]
Mapping the Kinetic Sunyaev-Zel'dovich Effect toward MACS J0717.5+3745 with NIKA , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201629182 , keywords =. 1606.07721 , pages =
-
[25]
The NIKA2 Large-Field-of-View Millimetre Continuum Camera for the 30 m IRAM Telescope , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201731503 , keywords =. 1707.00908 , pages =
-
[26]
Substructure and Merger Detection in Resolved NIKA Sunyaev-Zel'dovich Images of Distant Clusters , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201731950 , keywords =. 1712.01836 , pages =
-
[27]
MINOT: Modeling the Intracluster Medium (Non-)Thermal Content and Observable Prediction Tools , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/202039091 , keywords =. 2009.05373 , pages =
Pith/arXiv arXiv 2009
-
[28]
ensuremath gamma -Ray Detection toward the Coma Cluster with Fermi-LAT: Implications for the Cosmic Ray Content in the Hadronic Scenario , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/202039660 , keywords =. 2102.02251 , pages =
-
[29]
Adam, Remi and Ricci, M and Eckert, Dominique and Ade, P and Ajeddig, H and Altieri, B and Andr. The XXL Survey. LI. Pressure Profile and Y\ \_ SZ \ ensuremath -. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/202348049 , keywords =. 2310.05819 , pages =
-
[30]
PITSZI: Probing Intra-Cluster Medium Turbulence with Sunyaev--Zel'dovich Imaging: Application to the Triple Merging Cluster MACS J0717.5+3745 , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/202452342 , keywords =. 2409.14804 , primaryclass =
-
[31]
The XXL Survey. XX. The 365 Cluster Catalogue , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201731606 , keywords =. 1810.03849 , pages =
-
[32]
First Release of Apertif Imaging Survey Data , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/202244007 , keywords =. 2208.05348 , pages =
-
[33]
Constraints on Axionlike Particles from VERITAS Observations of a Flaring Radio Galaxy in the Perseus Cluster , author =. Phys. Rev. D , volume =. doi:10.1103/jydc-npy6 , keywords =. 2510.19010 , primaryclass =
-
[34]
Effective Viscosity in the Intracluster Medium during Magnetic Field Amplification via Turbulent Dynamo , author =. Astrophys. J. , volume =. doi:10.3847/1538-4357/addc5f , keywords =. 2506.12221 , primaryclass =
-
[35]
The Simons Observatory: Science Goals and Forecasts , author =. J. Cosmol. Astropart. Phys. , volume =. doi:10.1088/1475-7516/2019/02/056 , keywords =. 1808.07445 , primaryclass =
Pith/arXiv arXiv 2019
-
[36]
Apercal-The Apertif Calibration Pipeline , author =. Astron. Comput. , volume =. doi:10.1016/j.ascom.2021.100514 , keywords =. 2112.03722 , pages =
arXiv 2021
-
[37]
Splashback in Accreting Dark Matter Halos , author =. J. Cosmol. Astropart. Phys. , volume =. doi:10.1088/1475-7516/2014/11/019 , keywords =. 1409.4482 , pages =
Pith/arXiv arXiv 2014
-
[38]
The R2D2 Deep Neural Network Series Paradigm for Fast Precision Imaging in Radio Astronomy , author =. Astrophys. J. Suppl. , volume =. doi:10.3847/1538-4365/ad46f5 , keywords =. 2403.05452 , primaryclass =
- [39]
-
[40]
The Good, the Bad, and the Ugly: Statistical Quality Assessment of SZ Detections , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201424963 , keywords =. 1409.6543 , pages =
-
[41]
PACT. I. Combining ACT and Planck Data for Improved Extraction of tSZ Signal , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201935271 , keywords =. 1902.00350 , pages =
Pith/arXiv arXiv 1902
-
[42]
Dissecting a Miniature Universe: A Multi-Wavelength View of Galaxy Quenching in the Shapley Supercluster , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/202348672 , keywords =. 2402.18455 , pages =
-
[43]
Optical Validation and Characterization of Planck PSZ2 Sources at the Canary Islands Observatories. II. Second Year of LP15 Observations , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201936034 , keywords =. 1909.06235 , pages =
Pith/arXiv arXiv 1909
-
[44]
Calibrating the M\ \_ SZ \ ensuremath -
Velocity Dispersion and Dynamical Masses for 388 Galaxy Clusters and Groups. Calibrating the M\ \_ SZ \ ensuremath -. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/202039980 , keywords =. 2111.13071 , pages =
-
[45]
The WaZP Galaxy Cluster Sample of the Dark Energy Survey Year 1 , author =. Mon. Not. R. Astron. Soc. , volume =. doi:10.1093/mnras/stab264 , keywords =. 2008.08711 , pages =
Pith/arXiv arXiv 2008
-
[46]
The Atacama Cosmology Telescope: DR6 Sunyaev-Zel'dovich Selected Galaxy Clusters Catalog , author =. Open J. Astrophys. , volume =. doi:10.33232/001c.155863 , keywords =. 2507.21459 , primaryclass =
-
[47]
A Study of Catalogued Nearby Galaxy Clusters in the SDSS-DR4. I. Cluster Global Properties , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361:20066478 , keywords =. 0704.1579 , primaryclass =
-
[48]
A Study of Catalogued Nearby Galaxy Clusters in the SDSS-DR4. II. Cluster Substructure , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/200913901 , keywords =. 1007.3497 , primaryclass =
-
[49]
Aguerri, J. A. Deep Spectroscopy in Nearby Galaxy Clusters ndash. Mon. Not. R. Astron. Soc. , volume =. 1703.00740 , pages =
-
[50]
The Quench of the Star Formation in Galaxies in the Infall Region of Abell 85 , author =
Deep Spectroscopy of Nearby Galaxy Clusters - IV. The Quench of the Star Formation in Galaxies in the Infall Region of Abell 85 , author =. Mon. Not. R. Astron. Soc. , volume =. doi:10.1093/mnras/sty692 , keywords =. 1803.03045 , pages =
-
[51]
Dynamical Analysis of Clusters of Galaxies from Cosmological Simulations , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/202140326 , keywords =. 2105.09126 , pages =
-
[52]
Angular, Spectral, and Time Distributions of Highest Energy Protons and Associated Secondary Gamma Rays and Neutrinos Propagating through Extragalactic Magnetic and Radiation Fields , author =. Phys. Rev. D , volume =. doi:10.1103/PhysRevD.82.043002 , keywords =. 1006.1045 , pages =
-
[53]
The Tenth Data Release of the Sloan Digital Sky Survey: First Spectroscopic Data from the SDSS-III Apache Point Observatory Galactic Evolution Experiment , author =. Astrophys. J. Suppl. , volume =. doi:10.1088/0067-0049/211/2/17 , keywords =. 1307.7735 , pages =
-
[54]
Substructures within Substructures in the Complex Postmerging System A514 Unveiled by High-Resolution Magellan/Megacam Weak Lensing , author =. Astrophys. J. , volume =. doi:10.3847/1538-4357/ad65dc , keywords =. 2404.04321 , pages =
-
[55]
PSZ2 G181.06+48.47. III. Weak-Lensing Analysis and Merging Scenario Reconstruction of a Low-Mass Cluster with Exceptionally Distant Radio Relics , author =. Astrophys. J. , volume =. doi:10.3847/1538-4357/adbc99 , keywords =. 2501.09067 , primaryclass =
-
[56]
Ahnen, M. L. and Ansoldi, S and Antonelli, L. A. and Antoranz, P and Babi. Deep Observation of the NGC 1275 Region with MAGIC: Search of Diffuse \. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201527846 , keywords =
-
[57]
On Integral Upper Limits Assuming Power-Law Spectra and the Sensitivity in High-Energy Astronomy , author =. Astrophys. J. , volume =. doi:10.3847/1538-4357/aa5b97 , keywords =. 1701.06048 , pages =
-
[58]
Galaxy Clusters in the Swift/Burst Alert Telescope Era: Hard X-Rays in the Intracluster Medium , author =. Astrophys. J. , volume =. doi:10.1088/0004-637X/690/1/367 , keywords =. 0809.0006 , pages =
-
[59]
Non-Equilibrium Ionization State and Two-Temperature Structure in the Linked Region of Abell 399 and Abell 401 , author =. Publ. Astron. Soc. Jpn. , volume =. 0805.2453 , pages =
-
[60]
Hydrodynamic Simulations of Merging Galaxy Clusters: Non-Equilibrium Ionization State and Two-Temperature Structure , author =. Publ. Astron. Soc. Jpn. , volume =. doi:10.1093/pasj/62.2.335 , keywords =. 0909.5025 , pages =
-
[61]
Fast Radio Bursts as Probes of Magnetic Fields in the Intergalactic Medium , author =. Astrophys. J. , volume =. doi:10.3847/0004-637X/824/2/105 , keywords =. 1602.03235 , pages =
-
[62]
ATCA 16 Cm Observation of CIZA J1358.9-4750: Implication of Merger Stage and Constraint on Non-Thermal Properties , author =. Publ. Astron. Soc. Jpn. , volume =. doi:10.1093/pasj/psy042 , keywords =
-
[63]
Cosmic Magnetism in Centimeter- and Meter-Wavelength Radio Astronomy , author =. Publ. Astron. Soc. Jpn. , volume =. doi:10.1093/pasj/psx123 , keywords =. 1709.02072 , pages =
-
[64]
Galaxies , volume =
Strategy to Explore Magnetized Cosmic Web with Forthcoming Large Surveys of Rotation Measure , author =. Galaxies , volume =
-
[65]
Optimum Frequency of Faraday Tomography to Explore the Intergalactic Magnetic Field in Filaments of Galaxies , author =. Publ. Astron. Soc. Jpn. , volume =. doi:10.1093/pasj/psy124 , keywords =. 1808.10546 , pages =
-
[66]
Discovery of Radio Jets in the Phoenix Galaxy Cluster Center , author =. Publ. Astron. Soc. Jpn. , volume =. doi:10.1093/pasj/psaa039 , keywords =. 2004.05724 , pages =
Pith/arXiv arXiv 2004
-
[67]
X-Ray Study of the Outer Region of Abell 2142 with Suzaku , author =. Publ. Astron. Soc. Jpn. , volume =. doi:10.1093/pasj/63.sp3.S1019 , keywords =. 1106.5653 , pages =
-
[68]
X-Ray View of the Shock Front in the Merging Cluster Abell 3376 with Suzaku , author =. Publ. Astron. Soc. Jpn. , volume =. doi:10.1093/pasj/64.4.67 , keywords =. 1112.5955 , pages =
-
[69]
Properties of the Intracluster Medium of Abell 3667 Observed with Suzaku XIS , author =. Publ. Astron. Soc. Jpn. , volume =. doi:10.1093/pasj/64.3.49 , keywords =. 1111.5162 , pages =
-
[70]
Suzaku X-Ray Observations of the Accreting NGC 4839 Group of Galaxies and a Radio Relic in the Coma Cluster , author =. Publ. Astron. Soc. Jpn. , volume =. doi:10.1093/pasj/65.4.89 , keywords =. 1302.2907 , pages =
-
[71]
Systematic X-Ray Analysis of Radio Relic Clusters with Suzaku , author =. Publ. Astron. Soc. Jpn. , volume =. doi:10.1093/pasj/65.1.16 , keywords =. 1112.3030 , pages =
-
[72]
Suzaku X-Ray Study of the Double Radio Relic Galaxy Cluster CIZA J2242.8+5301 , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201425209 , keywords =. 1507.02285 , pages =
-
[73]
Suzaku and XMM-Newton Observations of the Newly Discovered Early-Stage Cluster Merger of
Akamatsu, Hiroki and Gu, Liyi and Shimwell, Timothy W and Mernier, Fran. Suzaku and XMM-Newton Observations of the Newly Discovered Early-Stage Cluster Merger of. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201629275 , keywords =. 1608.01669 , pages =
-
[74]
Suzaku Observations of the Merging Galaxy Cluster Abell 2255: The Northeast Radio Relic , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201628400 , keywords =. 1612.03058 , pages =
-
[75]
Properties of the Cosmological Filament between Two Clusters: A Possible Detection of a Large-Scale Accretion Shock by Suzaku , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201730497 , keywords =. 1704.05843 , pages =
-
[76]
Linear Regression for Astronomical Data with Measurement Errors and Intrinsic Scatter , author =. Astrophys. J. , volume =. doi:10.1086/177901 , keywords =. astro-ph/9605002 , pages =
-
[77]
An Expanded Catalogue of Low Surface Brightness Galaxies in the Coma Cluster Using Subaru/Suprime-Cam , author =. Mon. Not. R. Astron. Soc. , volume =. doi:10.1093/mnras/staa1763 , keywords =. 2006.10043 , pages =
Pith/arXiv arXiv 2006
-
[78]
A Catalogue of Complex Radio Sources in the Rapid ASKAP Continuum Survey Created Using a Self-Organising Map , author =. Publ. Astron. Soc. Aust. , volume =. doi:10.1017/pasa.2024.133 , keywords =. 2412.10183 , primaryclass =
Pith/arXiv arXiv 2024
-
[79]
Origin of the 150 Kpc Radio Filament in Galaxy ESO 137-006 , author =. Mon. Not. R. Astron. Soc. , volume =. doi:10.1093/mnras/staf1266 , keywords =. 2507.23026 , primaryclass =
-
[80]
Complex Diffuse Emission in the z = 0.52 Cluster PLCK G004.5-19.5 , author =. Astron. Astrophys. , volume =. doi:10.1051/0004-6361/201730496 , keywords =. 1708.00789 , pages =
discussion (0)
Sign in with ORCID, Apple, or X to comment. Anyone can read and Pith papers without signing in.