Substitutional platinum in silicon is an efficient nonradiative recombination center with large electron and hole capture cross sections at donor and acceptor levels; calculations match experiments when two symmetry-equivalent D2d Jahn-Teller configurations of the neutral defect are included.
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27 Pith papers cite this work. Polarity classification is still indexing.
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i-Rheo-Tempo reconstructs the shear relaxation modulus from complex viscosity via a model-free, quadrature-free second-derivative approach that reduces to local interval-slope calculations under piecewise linear approximation and matches independent time-domain measurements.
A new Eulerian-Lagrangian pore-scale model integrates soot transport, physical-principle deposition via elastic deformation and adhesion, and competitive O2/NO2 oxidation in CDPFs, validated on benchmarks and showing 87x catalyst acceleration of the direct O2 pathway under low-temperature conditions
Charged polymers exhibit orientation-dependent quadratic viscosity increases with electric field strength, captured by the new UCEM model requiring upper-convected derivatives of the electric field dyadic to reproduce Rouse and MD results.
Vertical homoepitaxial GaN alpha detector with 20-nm dead layer achieves 2.69% intrinsic energy resolution and 95.9% CCE at -260 V; Geant4 simulations show depletion-width nonuniformity dominates the low-energy tail.
Mumax+ now supports altermagnet simulations through a new d-wave magnet class, validated on Bloch domain walls and extended to skyrmion dynamics.
A unified microscopic theory predicts the coupled time evolution of stress relaxation, structural recovery, and memory effects in dense glass-forming Brownian suspensions after flow cessation.
A sequential beam-splitter model for quantum illumination shows that two-mode squeezed states outperform coherent states in detecting lossy targets under thermal noise.
In Bernoulli information space the Laplace-Beltrami spectrum supplies Green's functions for wave, heat and Poisson equations and permits quantization of momentum, producing energies and wavefunctions for free particles and oscillators that map to a quantum pendulum under quadratic KL approximation.
A sub-lattice phase-field model of Hf1-xZrxO2 calibrated to experiments reproduces the ferroelectric-to-antiferroelectric transition with rising Zr content and attributes gradual polarization switching at x=0.7-0.8 to mixed o- and t-phases driven by stray fields near domain walls.
Introduces an inductive volume measure that is the smallest satisfying the Area Formula, yielding it and the Coarea Formula as byproducts for applications in Geometric Analysis.
VB- defects in hBN show T2* = 13.8 ns from Ramsey interference and T2 = 108.7 ns from Hahn echo with stretch factor 1.25, using broadband pulses on a gold-wire sample.
An invariant measure on Hamiltonian energy level sets is constructed that generates the microcanonical partition function and asymptotically yields the canonical ensemble.
Simulations show electron-hole interactions enhance high-harmonic generation more strongly in MoS2 than NbSe2, with distinct phase changes and carrier injection via time-dependent tunneling in the metal.
Silicon nitride metasurfaces with resonant TE and TM modes achieve up to 100x enhancement in third-harmonic generation to deep-UV wavelengths compared to flat films, enabling polarization-selective UV light sources.
RA-PINN embeds gated attention in a residual network to reduce localized errors at steep charge boundaries while obeying the governing equations.
Hybrid simulations of the ion Weibel instability require a minimum grid resolution that scales with Alfvénic Mach number to correctly reproduce magnetic-field growth and saturation without introducing unphysical whistler modes.
SZ-LCT uses a BCH-expanded unitary transformation with a generator chosen to minimize non-seniority-zero Hamiltonian elements, achieving submilliHartree accuracy for strongly correlated electrons at O(N^8/n_c) scaling.
Magnetization orientation in Co3X3Y2 kagome monolayers tunes topological phases via competition between intrinsic and Rashba spin-orbit coupling in a symmetry-adapted tight-binding model, supported by DFT.
Hybrid fixed-optics plus DMD system generates near-ideal hollow beams with power-law wall exponents over 100 and improved efficiency for box potentials in quantum gases.
10% W-doped SnO2 TFTs made by low-temperature ALD show best performance after 300°C O2 annealing, with Ion/Ioff reaching 10^9, reduced hysteresis, and low bias stress shift, as an indium-free BEOL option.
DWS microrheology maps phase transitions and extracts G' and G'' in F127 solutions up to 80°C, highlighting the role of EO/PO ratio in the re-entrant liquid phase.
Gate-tunable analog memcapacitance is demonstrated in LaAlO3/SrTiO3 interface devices, originating from lateral floating gate charge localization with a supporting model.
Optimization study for muon tomography cargo scanner using TomOpt Bayesian optimization and GEANT4 simulations to enhance border security detection.
citing papers explorer
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Substitutional platinum as an efficient nonradiative recombination center in silicon
Substitutional platinum in silicon is an efficient nonradiative recombination center with large electron and hole capture cross sections at donor and acceptor levels; calculations match experiments when two symmetry-equivalent D2d Jahn-Teller configurations of the neutral defect are included.
-
i-Rheo-Tempo: A Model-Free, Quadrature-Free Reconstruction of the Shear Relaxation Modulus from Complex Viscosity
i-Rheo-Tempo reconstructs the shear relaxation modulus from complex viscosity via a model-free, quadrature-free second-derivative approach that reduces to local interval-slope calculations under piecewise linear approximation and matches independent time-domain measurements.
-
A Unified Pore-Scale Multiphysics Model for the Integrated Soot Transport-Deposition-Oxidation in Catalytic Diesel Particulate Filters
A new Eulerian-Lagrangian pore-scale model integrates soot transport, physical-principle deposition via elastic deformation and adhesion, and competitive O2/NO2 oxidation in CDPFs, validated on benchmarks and showing 87x catalyst acceleration of the direct O2 pathway under low-temperature conditions
-
Multi-scale Modeling of the Electro-viscoelasticity of Charged Polymers in Combined Flow and Electric Fields
Charged polymers exhibit orientation-dependent quadratic viscosity increases with electric field strength, captured by the new UCEM model requiring upper-convected derivatives of the electric field dyadic to reproduce Rouse and MD results.
-
Development and Performance Study of Vertical GaN $\alpha$-Particle Detector with High Energy Resolution
Vertical homoepitaxial GaN alpha detector with 20-nm dead layer achieves 2.69% intrinsic energy resolution and 95.9% CCE at -260 V; Geant4 simulations show depletion-width nonuniformity dominates the low-energy tail.
-
Simulating altermagnets using mumax+
Mumax+ now supports altermagnet simulations through a new d-wave magnet class, validated on Bloch domain walls and extended to skyrmion dynamics.
-
Unified Microscopic Theory of Stress Relaxation, Structural Evolution, and Memory Effects in Dense Glass Forming Brownian Suspensions After Flow Cessation
A unified microscopic theory predicts the coupled time evolution of stress relaxation, structural recovery, and memory effects in dense glass-forming Brownian suspensions after flow cessation.
-
Enhanced quantum illumination of a lossy target: A sequential interaction model
A sequential beam-splitter model for quantum illumination shows that two-mode squeezed states outperform coherent states in detecting lossy targets under thermal noise.
-
Classical and Quantum Dynamics in an Information Theoretic Space
In Bernoulli information space the Laplace-Beltrami spectrum supplies Green's functions for wave, heat and Poisson equations and permits quantization of momentum, producing energies and wavefunctions for free particles and oscillators that map to a quantum pendulum under quadratic KL approximation.
-
Zr Concentration-Dependent Sub-Lattice Phase-Field Model of Hf1-xZrxO2: Analysis of Phase Composition and Polarization Switching
A sub-lattice phase-field model of Hf1-xZrxO2 calibrated to experiments reproduces the ferroelectric-to-antiferroelectric transition with rising Zr content and attributes gradual polarization switching at x=0.7-0.8 to mixed o- and t-phases driven by stray fields near domain walls.
-
Inductive Volume Measure: A Geometric Alternative to Hausdorff Measure
Introduces an inductive volume measure that is the smallest satisfying the Area Formula, yielding it and the Coarea Formula as byproducts for applications in Geometric Analysis.
-
Spin-coherence characterization of boron vacancy defects in hexagonal boron nitride with broadband microwave pulses
VB- defects in hBN show T2* = 13.8 ns from Ramsey interference and T2 = 108.7 ns from Hahn echo with stretch factor 1.25, using broadband pulses on a gold-wire sample.
-
Invariant Measures in Hamiltonian Systems: The Analytical Foundations of Statistical Physics
An invariant measure on Hamiltonian energy level sets is constructed that generates the microcanonical partition function and asymptotically yields the canonical ensemble.
-
Contrasting ultrafast light-driven electron-hole interaction dynamics in monolayer MoS$_2$ and metallic NbSe$_2$
Simulations show electron-hole interactions enhance high-harmonic generation more strongly in MoS2 than NbSe2, with distinct phase changes and carrier injection via time-dependent tunneling in the metal.
-
Polarization-Sensitive Third Harmonic Generation in resonant silicon nitride Metasurfaces for deep-UV Emission
Silicon nitride metasurfaces with resonant TE and TM modes achieve up to 100x enhancement in third-harmonic generation to deep-UV wavelengths compared to flat films, enabling polarization-selective UV light sources.
-
High-Fidelity Reconstruction of Charge Boundary Layers and Sharp Interfaces in Electro-Thermal-Convective Flows via Residual-Attention PINNs
RA-PINN embeds gated attention in a residual network to reduce localized errors at steep charge boundaries while obeying the governing equations.
-
Ion Weibel Instability in the hybrid framework: the optimal resolution
Hybrid simulations of the ion Weibel instability require a minimum grid resolution that scales with Alfvénic Mach number to correctly reproduce magnetic-field growth and saturation without introducing unphysical whistler modes.
-
Seniority-zero Linear Canonical Transformation Theory
SZ-LCT uses a BCH-expanded unitary transformation with a generator chosen to minimize non-seniority-zero Hamiltonian elements, achieving submilliHartree accuracy for strongly correlated electrons at O(N^8/n_c) scaling.
-
Magnetization-Tunable Topological Phase Transitions in Ferromagnetic Kagome Monolayers of Co$_3$X$_3$Y$_2$ ($X=\mathrm{Sn},\mathrm{Pb}$; $Y=\mathrm{S},\mathrm{Se}$)
Magnetization orientation in Co3X3Y2 kagome monolayers tunes topological phases via competition between intrinsic and Rashba spin-orbit coupling in a symmetry-adapted tight-binding model, supported by DFT.
-
An efficient method to generate near-ideal hollow beams of different shapes for box potential of quantum gases
Hybrid fixed-optics plus DMD system generates near-ideal hollow beams with power-law wall exponents over 100 and improved efficiency for box potentials in quantum gases.
-
ALD W-Doped SnO$_2$ TFTs for Indium-Free BEOL Electronics
10% W-doped SnO2 TFTs made by low-temperature ALD show best performance after 300°C O2 annealing, with Ion/Ioff reaching 10^9, reduced hysteresis, and low bias stress shift, as an indium-free BEOL option.
-
DWS-based microrheology of triblock copolymers
DWS microrheology maps phase transitions and extracts G' and G'' in F127 solutions up to 80°C, highlighting the role of EO/PO ratio in the re-entrant liquid phase.
-
Gate-controlled analog memcapacitance in LaAlO3/SrTiO3 interface-based devices
Gate-tunable analog memcapacitance is demonstrated in LaAlO3/SrTiO3 interface devices, originating from lateral floating gate charge localization with a supporting model.
-
Optimization of a cosmic muon tomography scanner for cargo border control inspection
Optimization study for muon tomography cargo scanner using TomOpt Bayesian optimization and GEANT4 simulations to enhance border security detection.
-
Towards a Universal Foundation Model for Protein Dynamics: A Multi-Chain Tree-Structured Framework with Transformer Propagators
Proposes TSCG hierarchical representation and Transformer propagator for universal coarse-grained protein MD with claimed 10k-20k times acceleration over all-atom MD while preserving statistical properties.
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Spanwise Control Authority of Synthetic Jets on a Stalled Airfoil
High-frequency synthetic jet actuation on a stalled NACA 0025 airfoil yields steadier shear-layer reattachment and improved aerodynamics relative to low-frequency actuation, accompanied by spanwise variations in control effectiveness.
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Effect of Antral Motility on Food Hydrolysis and Gastric Emptying from the Stomach: Insights from Computational Models
Simulations in a human stomach model quantify how reduced peristaltic amplitudes affect protein hydrolysis rates, emptying rates, and mixing induced by antral waves.