108 citations · 167 across the 11 of their papers we have counts for
12 papers
Coexistence of extended and localized states in finite-sized mosaic Wannier-Stark lattices
Jun Gao, Ivan M. Khaymovich, Adrian Iovan +7
Quantum transport and localization are fundamental concepts in condensed matter physics. It is commonly believed that in one-dimensional systems, the existence of mobility edges is…
Probing multi-mobility edges in quasiperiodic mosaic lattices
Jun Gao, Ivan M. Khaymovich, Xiao-Wei Wang +8
The mobility edge (ME) is a crucial concept in understanding localization physics, marking the critical transition between extended and localized states in the energy spectrum. And…
Experimentally Detecting Quantized Zak Phases without Chiral Symmetry in Photonic Lattices
Zhi-Qiang Jiao, Stefano Longhi, Xiao-Wei Wang +8
Symmetries play a major role in identifying topological phases of matter and in establishing a direct connection between protected edge states and topological bulk invariants via t…
Topologically Protecting Squeezed Light on a Photonic Chip
Ruo-Jing Ren, Yong-Heng Lu, Ze-Kun Jiang +7
Squeezed light is a critical resource in quantum sensing and information processing. Due to the inherently weak optical nonlinearity and limited interaction volume, considerable pu…
Quantum Advantage with Timestamp Membosonsampling
Jun Gao, Xiao-Wei Wang, Wen-Hao Zhou +10
Quantum computer, harnessing quantum superposition to boost a parallel computational power, promises to outperform its classical counterparts and offer an exponentially increased s…
Timestamp Boson Sampling
Wen-Hao Zhou, Jun Gao, Zhi-Qiang Jiao +7
Quantum advantage, benchmarking the computational power of quantum machines outperforming all classical computers in a specific task, represents a crucial milestone in developing q…