241 citations
- University of Maryland, College ParkUS6 papers
- Joint Quantum InstituteUS3 papers
- California Institute of TechnologyUS1 paper
- Center for Physical Sciences and TechnologyLT1 paper
- Clarendon CollegeUS1 paper
- Cornell UniversityUS1 paper
- Duke UniversityUS1 paper
- Fusion AcademyUS1 paper
- KU LeuvenBE1 paper
- Massachusetts Institute of TechnologyUS1 paper
- New York UniversityUS1 paper
- Norwegian University of Science and TechnologyNO1 paper
6 papers
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…
Efficient quantum algorithm for dissipative nonlinear differential equations
Jin-Peng Liu, Herman Ãie Kolden, Hari K. Krovi +3
Nonlinear differential equations model diverse phenomena but are notoriously difficult to solve. While there has been extensive previous work on efficient quantum algorithms for li…
Breakdown of the thermodynamic limit in quantum spin and dimer models
Jeet Shah, Laura Shou, Jeremy Shuler +1
The thermodynamic limit is foundational to statistical mechanics, underlying our understanding of many-body phases. It assumes that, as the system size grows infinitely at fixed de…
Numerical evidence for the non-Abelian eigenstate thermalization hypothesis
Aleksander Lasek, Jae Dong Noh, Jade LeSchack +1
The eigenstate thermalization hypothesis (ETH) explains how generic quantum many-body systems thermalize internally. It implies that local operators' time-averaged expectation valu…
Non-onsite symmetry breaking: topological phase coexistence and criticality
Zhehao Zhang, Yabo Li, Tsung-Cheng Lu
We explore the states of matter arising from the spontaneous symmetry breaking (SSB) of non-onsite symmetries. In one spatial dimension, we construct a frustration-f…
String-Breaking Dynamics in Quantum Adiabatic and Diabatic Processes
Federica Maria Surace, Alessio Lerose, Or Katz +10
Confinement prohibits isolation of color charges, e.g., quarks, in nature via a process called string breaking: the separation of two charges results in an increase in the energy o…