most citedStrong-to-weak spontaneous breaking of 1-form symmetry and intrinsically mixed topological order

1 citations · 1 across the 4 of their papers we have counts for

collaborators

6 papers

quant-ph2026

Measures of Chirality in Mixed-State Topological Phases

Shijun Sun, Bader Aldossari, Rasmit Devkota +1

What does it mean for a mixed-state topological phase to be chiral? Mathematically, chirality can be sharply characterized through the symmetry algebra of the mixed state. Physical…

quant-ph2026

Entropic Barriers and the Kinetic Suppression of Topological Defects

Yi-Lin Tsao, Zhu-Xi Luo

Many quantum phases, from topological orders to superfluids, are destabilized at finite temperature by the proliferation and motion of topological defects such as anyons or vortice…

cond-mat.mes-hall2026

Universal Dynamical Scaling of Strong-to-Weak Spontaneous Symmetry Breaking in Open Quantum Systems

Chang Shu, Kai Zhang, Zhu-Xi Luo +2

Strong-to-weak spontaneous symmetry breaking (SWSSB) defines a mixed-state phase of matter--without a pure-state counterpart--in which nonlinear observables such as the Rényi-2 co…

quant-ph20261 cited

Strong-to-weak spontaneous breaking of 1-form symmetry and intrinsically mixed topological order

Carolyn Zhang, Yichen Xu, Jian-Hao Zhang +3

Topological orders in 2+1d are spontaneous symmetry-breaking (SSB) phases of 1-form symmetries in pure states. The notion of symmetry is further enriched in the context of mixed st…

cond-mat.str-el2025

Tensor Network Representations for Intrinsically Mixed-State Topological Orders

Bader Aldossari, Sergey Blinov, Zhu-Xi Luo

Tensor networks are an efficient platform to represent interesting quantum states of matter as well as to compute physical observables and information-theoretic quantities. We pres…

quant-ph2025

Exact, Average, and Broken Symmetries in a Simple Adaptive Monitored Circuit

Zhi Li, Zhu-Xi Luo

Symmetry is a powerful tool for understanding phases of matter in equilibrium. Quantum circuits with measurements have recently emerged as a platform for novel states of matter int…