Open Quantum Systems & Decoherence

746 papers for year 2020

Open Quantum Systems & Decoherence Research Context

This Quantum Articles category organizes published quantum research papers so readers can browse focused work by topic, source, and year.

Showing 637-648 of 746

Susceptibility of quasiclassical Brownian motion in harmonic nonlinear potentials

Pedro J. Colmenares

2020 arXiv arXiv preprint

Switchable Damping for a One-Particle Oscillator

X. Fan, S. E. Fayer, T. G. Myers, B. A. D. Sukra, G. Nahal, G. Gabrielse

2020 arXiv arXiv preprint

Synchronization and Non-Markovianity in open quantum systems

Göktuğ Karpat, İskender Yalçınkaya, Barış Çakmak, Gian Luca Giorgi, Roberta Zambrini

2020 arXiv arXiv preprint

Systematic large flavor fTWA approach to interaction quenches in the Hubbard model

Alexander Osterkorn, Stefan Kehrein

2020 arXiv arXiv preprint

Systems of random variables and the Free Will Theorem

Ehtibar N. Dzhafarov, Janne V. Kujala

2020 arXiv arXiv preprint

Szilard Engines as Quantum Thermodynamical Systems

Maryam Ashrafi, Kyle J. Ray, Fabio Anza, James P. Crutchfield

2020 arXiv arXiv preprint

Tensor Networks contraction and the Belief Propagation algorithm

Roy Alkabetz, Itai Arad

2020 arXiv arXiv preprint

Tensor-network approach to thermalization in open quantum many-body systems

Hayate Nakano, Tatsuhiko Shirai, Takashi Mori

2020 arXiv arXiv preprint

Termwise versus globally stoquastic local Hamiltonians: questions of complexity and sign-curing

Marios Ioannou, Stephen Piddock, Milad Marvian, Joel Klassen, Barbara M. Terhal

2020 arXiv arXiv preprint

Testing Dissipative Collapse Models with a Levitated Micromagnet

A. Vinante, G. Gasbarri, C. Timberlake, M. Toroš, H. Ulbricht

2020 arXiv arXiv preprint

Testing eigenstate decoherence hypothesis in a model of collisional decoherence

Ivan V. Dudinets, Igor Ermakov, Oleg Lychkovskiy

2020 arXiv arXiv preprint

The $n$-th decay rate of coherence for Bell-diagonal states under quantum channels

Huaijing Huang, Zhaoqi Wu, Shao-Ming Fei

2020 arXiv arXiv preprint