From the 5 of 50 papers with an AI index.
4 citations
- University of OxfordGB18 papers
- Istituto Nazionale di Fisica Nucleare, Sezione di NapoliIT16 papers
- Istituto Nazionale di Fisica Nucleare, Sezione di Roma IIT16 papers
- Rutherford Appleton LaboratoryGB16 papers
- SLAC National Accelerator LaboratoryUS16 papers
- Stony Brook UniversityUS16 papers
- Universidad Autónoma de MadridES16 papers
- University of ChicagoUS16 papers
- University of GlasgowGB16 papers
- Brookhaven National LaboratoryUS15 papers
- California State University SystemUS15 papers
- Istituto Nazionale di Fisica Nucleare, Sezione di GenovaIT15 papers
6 papers · 1 filter
Experimental measurement of quantum first-passage-time distributions
Joseph M. Ryan, Simon Gorbaty, Thomas J. Kessler +3
Classical First-Passage-Time Distributions (FPTDs) have been extensively studied both theoretically and experimentally. Their quantum counterparts-Quantum First-Passage-Time Distri…
Non-Gaussian Phase Transition and Cascade of Instabilities in the Dissipative Quantum Rabi Model
Mingyu Kang, Yikang Zhang, Kenneth R. Brown +1
The open quantum Rabi model describes a two-level system coupled to a harmonic oscillator. A Gaussian phase transition for the nonequilibrium steady states has been predicted when…
The Magic Barrier before Thermalization
Lukas Ebner, Berndt Müller, Andreas Schäfer +3
We investigate the time dependence of anti-flatness in the entanglement spectrum, a measure for non-stabilizerness and lower bound for non-local quantum magic resource, on a subsys…
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…
Hyper-optimized Quantum Lego Contraction Schedules
Balint Pato, June Vanlerberghe, Kenneth R. Brown
Calculating the quantum weight enumerator polynomial (WEP) is a valuable tool for characterizing quantum error-correcting (QEC) codes, but it is computationally hard for large or c…
Clifford-Deformed Compass Codes
Julie A. Campos, Kenneth R. Brown
We can design efficient quantum error-correcting (QEC) codes by tailoring them to our choice of quantum architecture. Useful tools for constructing such codes include Clifford defo…