Measurement-Induced Phases of Matter Require Feedback

被引:28
作者
Friedman, Aaron J. [1 ,2 ]
Hart, Oliver [1 ,2 ]
Nandkishore, Rahul [1 ,2 ]
机构
[1] Univ Colorado, Dept Phys, Boulder, CO 80309 USA
[2] Univ Colorado, Ctr Theory Quantum Matter, Boulder, CO 80309 USA
来源
PRX QUANTUM | 2023年 / 4卷 / 04期
基金
美国国家科学基金会;
关键词
QUANTUM; NONEQUILIBRIUM; THERMALIZATION; DYNAMICS; GLASSES;
D O I
10.1103/PRXQuantum.4.040309
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We explore universality and phases of matter in hybrid quantum dynamics combining chaotic time evolution and projective measurements. We develop a unitary representation of measurements based on the Stinespring theorem, which we crucially identify with the time evolution of the system and measurement apparatus, affording significant technical advantages and conceptual insight into hybrid dynamics. We diagnose spectral properties in the presence of measurements for the first time, along with standard, experimentally tractable probes of phase structure, finding no nontrivial effects due to measurements in the absence of feedback. We also establish that nonlinearity in the density matrix is neither sufficient nor necessary to see a transition, and instead identify utilization of the measurement outcomes (i.e., "feedback") as the crucial ingredient. After reviewing the definition of a phase of matter, we identify nontrivial orders in adaptive hybrid dynamics-in which measurement outcomes determine future unitary gates-finding a genuine measurement-induced absorbing-state phase transition in an adaptive quantum East model. In general, we find that only deterministic and constrained Haar-random dynamics with active feedback and without continuous symmetries can realize genuine, measurement-induced phases of matter.
引用
收藏
页数:46
相关论文
共 77 条
[1]   Colloquium: Many-body localization, thermalization, and entanglement [J].
Abanin, Dmitry A. ;
Altman, Ehud ;
Bloch, Immanuel ;
Serbyn, Maksym .
REVIEWS OF MODERN PHYSICS, 2019, 91 (02)
[2]   Entanglement and Charge-Sharpening Transitions in U(1) Symmetric Monitored Quantum Circuits [J].
Agrawal, Utkarsh ;
Zabalo, Aidan ;
Chen, Kun ;
Wilson, Justin H. ;
Potter, Andrew C. ;
Pixley, J. H. ;
Gopalakrishnan, Sarang ;
Vasseur, Romain .
PHYSICAL REVIEW X, 2022, 12 (04)
[3]  
Barberena D., 2023, arXiv
[4]  
Barratt F, 2022, Arxiv, DOI arXiv:2206.12429
[5]   Exact Spectral Form Factor in a Minimal Model of Many-Body Quantum Chaos [J].
Bertini, Bruno ;
Kos, Pavel ;
Prosen, Tomaz .
PHYSICAL REVIEW LETTERS, 2018, 121 (26)
[6]   SPIN-GLASSES - EXPERIMENTAL FACTS, THEORETICAL CONCEPTS, AND OPEN QUESTIONS [J].
BINDER, K ;
YOUNG, AP .
REVIEWS OF MODERN PHYSICS, 1986, 58 (04) :801-976
[7]   CHARACTERIZATION OF CHAOTIC QUANTUM SPECTRA AND UNIVERSALITY OF LEVEL FLUCTUATION LAWS [J].
BOHIGAS, O ;
GIANNONI, MJ ;
SCHMIT, C .
PHYSICAL REVIEW LETTERS, 1984, 52 (01) :1-4
[8]   Magic-state distillation with low overhead [J].
Bravyi, Sergey ;
Haah, Jeongwan .
PHYSICAL REVIEW A, 2012, 86 (05)
[9]   Spectral form factor in a random matrix theory [J].
Brezin, E ;
Hikami, S .
PHYSICAL REVIEW E, 1997, 55 (04) :4067-4083
[10]   Diagrammatic method of integration over the unitary group, with applications to quantum transport in mesoscopic systems [J].
Brouwer, PW ;
Beenakker, CWJ .
JOURNAL OF MATHEMATICAL PHYSICS, 1996, 37 (10) :4904-4934