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๐Ÿ” computing methodologies ๐Ÿ“‚ Physics
Showing 57802 results for "computing methodologies" in Physics
Physics Preprint PDF DOI

Sharpening Worst-Case Error Assessment for Fault-Tolerant Quantum Computing: Fidelity and Its Deviation

Kyoungho Cho, Ilkwon Sohn, Yongsoo Hwang, Jeongho Bang ยท 2026

Gate fidelity -- an average fidelity over all possible input states -- is the workhorse metric for benchmarking quantum gates or circuits, yet fault-tolerant quantum computing ultimately depends on thโ€ฆ

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Physics Preprint PDF DOI

New Way to Date Globular Clusters: Brown Dwarf Cooling Sequences

Roman Gerasimov ยท 2026

As the oldest building blocks of our Galaxy, globular clusters retain the archaeological footprint of the early stellar environments. Accurate absolute ages of globular clusters are required to interpโ€ฆ

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Physics Preprint PDF DOI

Gauss-Bonnet corrected string/black hole transition in large dimensions

Bum-Hoon Lee, Hocheol Lee, Somyadip Thakur ยท 2026

We develop a unified analytic treatment of the Horowitz--Polchinski string/black hole correspondence that systematically incorporates higher-derivative corrections to gravity. Working in Euclidean sigโ€ฆ

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Physics Preprint PDF DOI

Fluctuation imaging of disorder in monolayer semiconductors

Tom T. C. Sistermans, Rasmus H. Godiksen, Sara A. Elrafei, Alberto G. Curto ยท 2026

Monolayer semiconductors hold great potential for nanoscale electronics, optoelectronics, and photonics. Excitons dominate their optical properties. As their electric fields extend outside the monolayโ€ฆ

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Physics Preprint PDF DOI

AI based design of 2D material integrated optical polarizers

Rong Wang, Di Jin, Junkai Hu, Wenbo Liu, Yuning Zhang, Irfan H. Abidi, Sumeet Walia, Baohua Jia, Duan Huang, Jiayang Wu, David J. Moss ยท 2026

On-chip integration of highly anisotropic two-dimensional (2D) materials offers new opportunities for realizing high performance polarization selective devices. Obtaining optimized designs for such deโ€ฆ

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Physics Preprint PDF DOI

Optimal multiparameter quantum estimation in accelerating Unruh-DeWitt detectors

Omar Bachain, Elhabib Jaloum, Mohamed Amazioug, Reem Altuijri, Rachid Ahl Laamara, Abdel-Haleem Abdel-Aty ยท 2026

The quantum Fisher information matrix (QFIM) is central to multiparameter quantum metrology, dictating the attainable sensitivity via the quantum Cram\'er-Rao bound. In this work, we investigate the uโ€ฆ

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Physics Preprint PDF DOI

paces: Parallelized Application of Co-Evolving Subspaces, a method for computing quantum dynamics on GPUs

R. Kevin Kessing ยท 2026

An efficient method of solving the time-dependent Schr\"odinger equation for pure states is described: At each timestep, a restricted subspace of the total Hilbert space is systematically and naturallโ€ฆ

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Physics Preprint PDF DOI

Long-time storage of entangled logical states in decoherence-free subspaces

L. Zhang, Y.-L. Xu, Y.-K. Wu, C. Zhang, Z.-B. Cui, Y.-Y. Chen, W.-Q. Lian, J.-Y. Ma, B.-X. Qi, Y.-F. Pu, Z.-C. Zhou, L. He, P.-Y. Hou, L.-M. Duan ยท 2026

The maintenance of quantum entanglement lays the elementary building block of quantum information processing, requiring an integration of long coherence time, sufficient storage capacity, and high-fidโ€ฆ

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Realizing microrheological response of configurable viscoelastic media with a dynamic optical trap

Sanatan Halder, Manas Khan ยท 2026

The local viscoelastic (VE) environment governs the motion of an embedded microsphere and consequently, pertinent dynamical phenomena. However, studying such phenomena with varying VE properties remaiโ€ฆ

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Full-Scale GPU-Accelerated Transient EM-Thermal-Mechanical Co-Simulation for Early-Stage Design of Advanced Packages

Hongyang Liu, Tejas Kulkarni, Ganesh Subbarayan, Cheng-Kok Koh, Dan Jiao ยท 2026

In the early-stage design of advanced electronic packages, designers face a critical trade-off between simulation fidelity and computational turnaround time. Conventional early-stage methodologies typโ€ฆ

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Quantum criticality in sub-Ohmic systems with three competing terms: beyond conventional spin-boson physics

Nengji Zhou, Yulong Shen, Zhe Sun ยท 2026

Quantum phase transitions (QPTs) in the spin-boson model with/without the rotating-wave approximation (RWA) are systematically investigated through variational calculations using a sub-Ohmic bath withโ€ฆ

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Experimentally Resolving Gravity-Capillary Wave Evolution in Vessels of Unknown Boundary Conditions

Sean M. D. Gregory, Vitor S. Barroso, Silvia Schiattarella, Anastasios Avgoustidis, Silke Weinfurtner ยท 2026

The geometries of surface wave modes are determined by the highly nontrivial interplay of capillarity and wetting effects at the boundaries of their domain. Aside from idealised scenarios, this commonโ€ฆ

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Efficient construction of time-invariant process tensors for simulating high-dimensional non-Markovian open quantum systems

Emile Cochin, Jonathan Keeling, Brendon W. Lovett, Alex W. Chin ยท 2026

Numerical methods for obtaining exact dynamics of non-Markovian open quantum systems are mostly limited to either small systems or to short-time evolution only. Here, we propose a new algorithm for coโ€ฆ

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Operational impact of quantum resources in chemical dynamics

Julia Liebert, Gregory D. Scholes ยท 2026

Quantum coherence and other non-classical features are widely discussed in chemical dynamics, yet it remains difficult to quantify when such resources are operationally relevant for a given process anโ€ฆ

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The Cluster Evolutionary Reference Ensemble at Low-$z$ (CEREAL) Sample of Galaxy Clusters I: X-ray Morphological Properties and Demographics

Laurel White, Michael McDonald, Steven W. Allen, Marshall W. Bautz, Michael Calzadilla, Gordon P. Garmire, Julie Hlavacek-Larrondo, Ralph Kraft, Adam B. Mantz, Taweewat Somboonpanyakul, Alexey Vikhlinin ยท 2026

With rapid improvements in the assembly of large samples of galaxy clusters, we are approaching the ability to study clusters at $z\gtrsim2$. Evolutionary studies comparing these distant clusters to tโ€ฆ

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Unifying description of competing chiral and nematic superconducting states in twisted bilayer graphene

Lucas Baldo, Patric Holmvall, Annica M. Black-Schaffer ยท 2026

We reveal a striking correspondence between electron- and phonon-driven pairing in twisted bilayer graphene (TBG) by mapping an atomistic electronically driven pairing model onto an effective inter-vaโ€ฆ

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Remote Entanglement in Lattice Surgery: To Distill, or Not to Distill

Sitong Liu, John Stack, Ke Sun, Roel Van Beeumen, Inder Monga, Katherine Klymko, Kenneth R. Brown, Erhan Saglamyurek ยท 2026

Distributed quantum computing can potentially address the scalability challenge by networking processors through photon-mediated remote entanglement. Prior approaches assumed that remote Bell pairs reโ€ฆ

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MIGHTEE: The dark matter haloes, duty cycle and mechanical feedback from radio-AGN up to $z \sim 2.5$

Joel Hamlett, Catherine L. Hale, Matt J. Jarvis, David Alonso, Natalia Stylianou, Imogen H. Whittam ยท 2026

Radio-AGN are observed to be more strongly clustered than non-active galaxies, though it is unclear whether this is simply due to their preference for massive host galaxies, or if they reside in distiโ€ฆ

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Long-range machine-learning potentials with environment-dependent charges enable predicting LO-TO splitting and dielectric constants

Dmitry Korogod, Alexander V. Shapeev, Ivan S. Novikov ยท 2026

We present two models with explicit long-range electrostatics in the form of Coulomb interactions. Both models include point charges depending on their local atomic environments, and the second model โ€ฆ

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Quantum Hamlets: Distributed Compilation of Large Algorithmic Graph States

Anthony Micciche, Naphan Benchasattabuse, Andrew McGregor, Michal Hajdusek, Rodney Van Meter, Stefan Krastanov ยท 2026

We investigate the problem of compiling the generation of graph states to arbitrarily many distributed homogeneous quantum processing units (QPUs), providing a scalable partitioning algorithm and grapโ€ฆ

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