arrow
返回

Stable bipolarons in open quantum systems

delete2023-06-29
delete9
delete
OA
AI
M
Mattia Moroder *
M
M. Grundner
F
François Damanet
S
Schoellwock, U.
S
Sam Mardazad
S
Stuart Flannigan
K
Koehler, T.
S
Sebastian Paeckel
DOI:10.1103/PhysRevB.107.214310delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Recent advances in numerical methods significantly pushed forward the understanding of electrons coupled to quantized lattice vibrations. At this stage, it becomes increasingly important to also account for the effects of physically inevitable environments. Here, we combine state-of-the-art tensor-network and quantum trajectories methods in order to study the impact of dissipation on realistic condensed matter models including highly excited phononic modes. In particular, we study the transport properties of the Hubbard-Holstein Hamiltonian that models a large class of materials characterized by strong electron-phonon coupling, in contact with a dissipative environment. We combine the non-Markovian hierarchy of pure states method and the Markovian quantum jumps method with the newly introduced projected purified density-matrix renormalization group, creating powerful tensor-network methods for dissipative quantum many-body systems. Investigating their numerical properties, we find a significant speedup up to a factor approximate to 30 compared to conventional tensor-network techniques. We apply these methods to study dissipative quenches, aiming for an in-depth understanding of the formation, stability, and quasiparticle properties of bipolarons. Surprisingly, our results show that in the metallic phase dissipation localizes the bipolarons, which is reminiscent of an indirect quantum Zeno effect. However, the bipolaronic binding energy remains mainly unaffected, even in the presence of strong dissipation, exhibiting remarkable bipolaron stability. These findings shed light on the problem of designing real materials exhibiting phonon-mediated high-TC superconductivity.
Keyword:
MATRIX RENORMALIZATION-GROUP
HIGH-TEMPERATURE SUPERCONDUCTIVITY
GROUP ALGORITHM
MODEL
STATES
OSCILLATOR
PHASES
ATOMS

期刊

Physical Review B 封面图
Physical Review B
IF:
3.7
论文数:
15.4W
被引数:
41.0W

机构

U
University of Liege
学者数:
1.7W
论文数: 1.4W
被引数: 2.1W
U
University of Munich
学者数:
5.7W
论文数: 4.2W
被引数: 68
U
university of strathclyde
学者数:
1.1W
论文数: 1.1W
被引数: 12
U
uppsala university
学者数:
3.7W
论文数: 3.4W
被引数: 47
学者 查看更多机构
引用论文

引用论文

Complementation by the protein tyrosine kinase JAK2 of a mutant cell line defective in the interferon-& gamma; signal transduction pathway
err1993-11-01
err0
PREAI
errDiane Watling; Dmitry Guschin; Mathias Müller; Olli Silvennoinen; Bruce A. Witthuhn; Frederick W. Quelle; Neil C. Rogers; Chris Schindler; George R. Stark; James N. Ihle; lan M. Kerr
err分享
err收藏
An improved frequency meter for atomic magnetometer based on accurate time measurement基于精确时间测量的原子磁力计改进型频率计
err2019-01-01
err0
errOAAI
errKai Jin; Wangwang Tang; Wenjing Deng; Yan Huang; Xiaoxia Ding; Tianya Wu; Guoqing Yang; Guangming Huang
err分享
err收藏
Quench dynamics in a model with tuneable integrability breaking
err2014-04-03
err135
errOAAI
errEssler, F. H. L.; Kehrein, S.; Manmana, S. R.; Robinson, N. J.
err分享
err收藏
Phonon spectral function of the one-dimensional Holstein-Hubbard model
err2015-06-29
err17
errOAAI
errWeber, Manuel; Assaad, Fakher F.; Hohenadler, Martin
err分享
err收藏
HEXACO personality and Schwartz's personal values: A facet-level analysis
err2017-06-01
err0
errOAAI
errJeromy Anglim; Emily R.V. Knowles; Patrick D. Dunlop; Andrew Marty
err分享
err收藏
Evaluation of Physical Unclonable Functions for 28-nm Process Field-Programmable Gate Arrays
err2014-01-01
err0
errOAAI
errYohei Hori; Hyunho Kang; Toshihiro Katashita; Akashi Satoh; Shinichi Kawamura; Kazukuni Kobara
err分享
err收藏
Nonreciprocal quantum transport at junctions of structured leads
err2019-06-19
err14
errOAAI
errMascarenhas, Eduardo; Damanet, Francois; Flannigan, Stuart; Tagliacozzo, Luca; Daley, Andrew J.; Goold, John; de Vega, Ines
err分享
err收藏
学者 查看更多内容