Isotopically purified 70Ge hole spin qubits achieve T2* >20 us on sweet spot and >3 us off sweet spot with >99.9% gate fidelity while revealing a quadrupolar nuclear-noise channel from residual 73Ge.
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Review of Particle Physics
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Chiral confining RMF model applied for the first time to finite nuclei reproduces binding energies and charge radii for medium and heavy nuclei after Bayesian calibration, with discrepancies in light nuclei tied to the rigid chiral potential.
Entanglement entropy in a holographic QCD model with a magnetic field develops a swallow-tail and becomes multivalued at large chemical potential, mirroring the model's own thermodynamic phase transitions.
Continuum-extrapolated lattice QCD yields heavy-meson LCDAs with D-meson peak at y≈0.2-0.3 and HQET inverse moment λ_B=0.340(20) GeV at 1 GeV, consistent with other determinations.
The baryonic decay Lambda_b -> Lambda_c(-> Lambda pi) tau nu provides an independent probe of the R(D(*)) anomalies, with (C_VL, C_SR) as the most favored new physics solution and observables like K_1c, K_2ss showing high sensitivity.
The f(Q, L_m) gravity model fits observational data from BBN to late-time acceleration, acting as a viable quintessence-like alternative to the standard LambdaCDM model.
Euler-Heisenberg AdS black holes show a four-phase structure with two critical points and multiple Widom lines in the complex plane under Lee-Yang analysis.
Universal two-zero textures in SO(10) remain compatible with JUNO-era flavor data, prefer normal ordering, predict meV-scale mββ, and arise from Z3-gauged Z7 non-invertible selection rules.
A KamLAND global fit using Daya Bay-measured antineutrino spectra instead of the Huber-Müller model lowers the best-fit Δm²₂₁ from 7.53 to 7.50 ×10^{-5} eV² and reduces tension with JUNO.
Analysis of new COHERENT germanium CEνNS data yields updated constraints on the weak mixing angle, neutrino charge radii, germanium neutron rms radius, and bounds on neutrino non-standard interactions via global fits.
Generalized horizon entropy models satisfy BBN constraints on helium and deuterium abundances when parameters are chosen for cosmic acceleration, though lithium remains discrepant as in standard cosmology.
Dehnen-halo parameters amplify closed-orbit scale and induce GW phase lag; for the (z,1,z-1) family, light-curve peaks equal 3z-1 at high inclination.
Derives new physics scale constraints in a six-dimensional EFT subspace for μ to e transitions using data from μ→eγ, μ→3e, and nuclear conversion experiments while highlighting their complementarity.
Newton-Raphson and the exact two-body kinematic formula both give p_π⁰ = 118.129 MeV/c for ³_ΛH → ³H + π⁰ using the MAMI A1 B_Λ = 0.523 MeV.
Derives λ, ρ1, ρ2, σ1, and σ2 Regge trajectories for the hexaquark (ū(cc))(b(b̄b̄)) in the triquark-antitriquark picture, showing substructure is required for most series and giving rough mass estimates for excited states.
QCDF calculation with NLO terms and updated form factors yields branching ratios up to O(10^{-4}) for B0 to D+ a0- and Bs0 to Ds+ a0- in one scalar meson scenario.
Convolutional neural networks classify 12C+12C TPC events at 90-97% accuracy and reconstruct vertices.
N-polar AlN HEMTs with 5.2 nm GaN channel reach on/off ratios of 10,000 via abrupt AlN/GaN interface and lower gate leakage, though channel sheet resistance remains high at 2000 Ohm/square.
A Coulomb-plus-logarithm potential, solved by first-order perturbation theory and fitted to PDG masses, reproduces bottomonium and charmonium spectra with APAD 0.24% and 1.65%.
Cobalt substitution in these nanostructured perovskites increases ferromagnetic coupling and produces a maximum magnetic entropy change of 1.13 J/kg K under 3 T for the x=1 composition.
The shadow of a Kerr-Newman-like black hole in Bumblebee gravity with plasma is analyzed via observables and constrained by M87* EHT data, with spin and Lorentz violation mainly distorting the shape while charge and plasma shrink the size.
Authors construct solitary, periodic cnoidal, and superposition traveling wave solutions for the (2+1)-dimensional Boussinesq system governing surface waves in ideal fluids.
z-DM modeling of multiple FRB surveys constrains minimum burst energy to log E_min = 39.49^{+0.39}_{-1.48} erg and predicts 25-41% of FAST FRBs at z ≳ 2.
BESIII sets the most stringent upper limits to date on semileptonic, nonleptonic, and FCNC charmonium weak decays using over 10^10 J/ψ and 2.7×10^9 ψ(2S) events.
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High-Fidelity Hole Spin Qubits Reveal Quadrupolar Nuclear-Bath Dynamics in Isotopically Purified Planar Germanium
Isotopically purified 70Ge hole spin qubits achieve T2* >20 us on sweet spot and >3 us off sweet spot with >99.9% gate fidelity while revealing a quadrupolar nuclear-noise channel from residual 73Ge.
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Nuclear structure within the relativistic mean field approach including chiral symmetry and quark confinement effects
Chiral confining RMF model applied for the first time to finite nuclei reproduces binding energies and charge radii for medium and heavy nuclei after Bayesian calibration, with discrepancies in light nuclei tied to the rigid chiral potential.
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Holographic entanglement entropy under external magnetic field from the EMD model
Entanglement entropy in a holographic QCD model with a magnetic field develops a swallow-tail and becomes multivalued at large chemical potential, mirroring the model's own thermodynamic phase transitions.
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Determination of heavy meson light-cone distribution amplitudes: theoretical framework and lattice simulations
Continuum-extrapolated lattice QCD yields heavy-meson LCDAs with D-meson peak at y≈0.2-0.3 and HQET inverse moment λ_B=0.340(20) GeV at 1 GeV, consistent with other determinations.
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The Angular Observables of $\Lambda_b \to \Lambda_c(\to \Lambda^0 \pi^+) \, \tau^-(\to \pi^- \nu_\tau)\, \bar{\nu}_\tau$ within the Paradigm of FCCC Anomalies
The baryonic decay Lambda_b -> Lambda_c(-> Lambda pi) tau nu provides an independent probe of the R(D(*)) anomalies, with (C_VL, C_SR) as the most favored new physics solution and observables like K_1c, K_2ss showing high sensitivity.
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From Big Bang Nucleosynthesis to Late-Time Acceleration in $f(Q,L_m)$ Gravity
The f(Q, L_m) gravity model fits observational data from BBN to late-time acceleration, acting as a viable quintessence-like alternative to the standard LambdaCDM model.
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Complex Phase Structure and Widom line for Euler Heisenberg black holes
Euler-Heisenberg AdS black holes show a four-phase structure with two critical points and multiple Widom lines in the complex plane under Lee-Yang analysis.
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Universal two-zero texture in SO(10): implications of JUNO and realization from non-invertible symmetries
Universal two-zero textures in SO(10) remain compatible with JUNO-era flavor data, prefer normal ordering, predict meV-scale mββ, and arise from Z3-gauged Z7 non-invertible selection rules.
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Refined Global Fit of KamLAND Data and the Daya Bay Antineutrino Energy Spectrum
A KamLAND global fit using Daya Bay-measured antineutrino spectra instead of the Huber-Müller model lowers the best-fit Δm²₂₁ from 7.53 to 7.50 ×10^{-5} eV² and reduces tension with JUNO.
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Phenomenological implications of the high-precision COHERENT germanium CE$\nu$NS data
Analysis of new COHERENT germanium CEνNS data yields updated constraints on the weak mixing angle, neutrino charge radii, germanium neutron rms radius, and bounds on neutrino non-standard interactions via global fits.
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Viability of Big Bang Nucleosynthesis in Some Generalized Horizon Entropies
Generalized horizon entropy models satisfy BBN constraints on helium and deuterium abundances when parameters are chosen for cosmic acceleration, though lithium remains discrepant as in standard cosmology.
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Gravitational emissions and light curves of quasi-periodic orbits in Schwarzschild spacetime embedded in a Dehnen-type dark matter halo
Dehnen-halo parameters amplify closed-orbit scale and induce GW phase lag; for the (z,1,z-1) family, light-curve peaks equal 3z-1 at high inclination.
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Reach and complementarity of $\mu\to e$ searches
Derives new physics scale constraints in a six-dimensional EFT subspace for μ to e transitions using data from μ→eγ, μ→3e, and nuclear conversion experiments while highlighting their complementarity.
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Neutral pion momentum in hypertriton mesonic decay through a root-finding method
Newton-Raphson and the exact two-body kinematic formula both give p_π⁰ = 118.129 MeV/c for ³_ΛH → ³H + π⁰ using the MAMI A1 B_Λ = 0.523 MeV.
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$\lambda$, $\rho$, and $\sigma$ Regge trajectories for the hexaquark ${(\bar{u}(cc))(b(\bar{b}\bar{b}))}$ in the triquark-antitriquark picture
Derives λ, ρ1, ρ2, σ1, and σ2 Regge trajectories for the hexaquark (ū(cc))(b(b̄b̄)) in the triquark-antitriquark picture, showing substructure is required for most series and giving rough mass estimates for excited states.
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Study on the Cabibbo-favored ${\overline B}_{d,s}$ ${\to}$ $D_{d,s}^{(*)+}S^{-}$ weak decays in QCD factorization
QCDF calculation with NLO terms and updated form factors yields branching ratios up to O(10^{-4}) for B0 to D+ a0- and Bs0 to Ds+ a0- in one scalar meson scenario.
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Machine Learning methods for event classification and vertex reconstruction of the 12C + 12C reaction with the MATE-TPC
Convolutional neural networks classify 12C+12C TPC events at 90-97% accuracy and reconstruct vertices.
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Depletion-mode N-polar AlN-based high electron mobility transistors with improved on/off ratios
N-polar AlN HEMTs with 5.2 nm GaN channel reach on/off ratios of 10,000 via abrupt AlN/GaN interface and lower gate leakage, though channel sheet resistance remains high at 2000 Ohm/square.
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Approximate mass spectra of the heavy mesons under a Coulomb plus logarithmic spin-dependent potential function
A Coulomb-plus-logarithm potential, solved by first-order perturbation theory and fitted to PDG masses, reproduces bottomonium and charmonium spectra with APAD 0.24% and 1.65%.
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Magnetocaloric Effect in Nanostructured $La_{0.6}Sr_{0.4}Fe_{1-x}Co_{x}O_3$
Cobalt substitution in these nanostructured perovskites increases ferromagnetic coupling and produces a maximum magnetic entropy change of 1.13 J/kg K under 3 T for the x=1 composition.
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Photon regions, shadow observables and constraints from M87* of a Kerr-Newman-like black hole in Bumblebee gravity surrounded by plasma
The shadow of a Kerr-Newman-like black hole in Bumblebee gravity with plasma is analyzed via observables and constrained by M87* EHT data, with spin and Lorentz violation mainly distorting the shape while charge and plasma shrink the size.
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Solitary wave solutions, periodic and superposition solutions to the system of first-order (2+1)-dimensional Boussinesq's equations derived from the Euler equations for an ideal fluid model
Authors construct solitary, periodic cnoidal, and superposition traveling wave solutions for the (2+1)-dimensional Boussinesq system governing surface waves in ideal fluids.
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Modelling DSA, FAST and CRAFT surveys in a z-DM analysis and constraining a minimum FRB energy
z-DM modeling of multiple FRB surveys constrains minimum burst energy to log E_min = 39.49^{+0.39}_{-1.48} erg and predicts 25-41% of FAST FRBs at z ≳ 2.
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Mini-review of charmonium weak decays at BESIII
BESIII sets the most stringent upper limits to date on semileptonic, nonleptonic, and FCNC charmonium weak decays using over 10^10 J/ψ and 2.7×10^9 ψ(2S) events.
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