Holographic View of Mixed-State Symmetry-Protected Topological Phases in Open Quantum Systems
ORAL
Abstract
We establish a holographic duality between d-dimensional mixed-state symmetry-protected topological phases (mSPTs) and (d+1)-dimensional subsystem symmetry-protected topological states (SSPTs). Specifically, we show that the reduced density matrix of the boundary layer of a (d+1)-dimensional SSPT with subsystem symmetry S and global symmetry G corresponds to a d-dimensional mSPT with strong S and weak G symmetries. Conversely, we demonstrate that the wavefunction of an SSPT can be constructed by replicating the density matrix of the corresponding lower-dimensional mSPT. This mapping links the density matrix in lower dimensions to the entanglement properties of higher-dimensional wavefunctions, providing an approach for analyzing nonlinear quantities and quantum information metrics in mixed-state systems. Our duality offers a new perspective for studying intrinsic mSPTs that are unique to open quantum systems, without pure state analogs. We show that strange correlators and twisted Renyi-N correlators can diagnose these nontrivial phases and explore their connection to strange correlators in pure-state SSPTs.
*This research is supported in part by grant NSF PHY-2309135 to the Kavli Institute for Theoretical Physics (KITP). Jian-Hao Zhang is supported by the U.S. Department of Energy under the award number DE-SC0024324. Zhen Bi is supported by NSF under award number DMR-2339319. Yizhi You is supported in part by NSF under grant number PHY-2210452 and the Durand Fund.
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Publication: https://arxiv.org/abs/2410.08205
Presenters
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Shijun Sun
- Georgia Institute of Technology