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- University of Maryland, College ParkUS371 papers
- National Institute of Standards and TechnologyUS188 papers
- Joint Center for Quantum Information and Computer ScienceUS34 papers
- University of DelawareUS22 papers
- Austrian Academy of SciencesAT12 papers
- Petersburg Nuclear Physics InstituteRU12 papers
- Universität InnsbruckAT12 papers
- University of Nevada, RenoUS11 papers
- Centre National de la Recherche ScientifiqueFR10 papers
- Clemson UniversityUS10 papers
- Harvard UniversityUS10 papers
- Monash UniversityAU10 papers
7 papers · 1 filter
Fluctuation theorems for autonomous work
Christopher Jarzynski, Sebastian Deffner, Saar Rahav
Classical fluctuation theorems for work have been obtained theoretically, and verified experimentally, within a non-autonomous framework in which work is performed on a system of i…
Over forty years of research towards the understanding of Quantum Brownian Motion -- the contributions of A. O. Caldeira
Marcus V. S. Bonança, Sebastian Deffner, Gert-Ludwig Ingold
This article presents a brief account of Amir O. Caldeira's contributions to the theory of quantum Brownian motion. Motivated by its importance, we outline the description of Brown…
Tightening energy-based boson truncation bound using Monte Carlo-assisted methods
Jinghong Yang, Christopher F. Kane, Shabnam Jabeen
Quantum simulation offers a promising framework for quantum field theory calculations. Obtaining reliable results, however, requires careful characterization of systematic uncertai…
Relativistic single-electron wavepacket in quantum electromagnetic fields II: Quantum radiation emitted by a uniformly accelerated electron
Shih-Yuin Lin, Bei-Lok Hu
We compute the quantum radiation emitted by wavepackets of relativistic single electrons, both at rest and undergoing uniform acceleration in the Minkowski vacuum of the electromag…
In situ magnetic-field stabilization for quantum-gas experiments
E. Gvozdiovas, A. Valdés-Curiel, Q. -Y. Liang +6
We demonstrate a minimally-destructive in situ technique for measuring and stabilizing slowly-drifting magnetic fields in ultracold-atom experiments. While conventional magnetic-fi…
Characterization of Feshbach resonances in using improved interaction potentials
Jing-Chen Zhang, Paul Julienne, Yu Liu
We characterize Feshbach resonances in all isotopologues of the system with improved interaction potentials. Starting from spectroscopically accurate Mo…