Biblio
Found 76 results
Filters: Author is Chao-Ming Jian [Clear All Filters]
. 2021. “Topology In Nonlinear Mechanical Systems”. Physical Review Letters 127: 076802. https://link.aps.org/doi/10.1103/PhysRevLett.127.076802.
. 2021. “Universal Features Of Higher-Form Symmetries At Phase Transitions”. SciPost Phys. 11: 33. https://scipost.org/10.21468/SciPostPhys.11.2.033.
. 2022. “Criticality And Entanglement In Nonunitary Quantum Circuits And Tensor Networks Of Noninteracting Fermions”. Physical Review B [Editors' Suggestion] 106: 134206 . https://link.aps.org/doi/10.1103/PhysRevB.106.134206.
. 2022. “Exotic Invertible Phases With Higher-Group Symmetries”. SciPost Phys. 12: 52. https://scipost.org/10.21468/SciPostPhys.12.2.052.
. 2022. “Gauging U(1) Symmetry In (2+1)D Topological Phases”. SciPost Physics 12: 202.
. 2022. “Interaction-Driven Metal-Insulator Transition With Charge Fractionalization”. Physical Review X 12: 021067.
. 2022. “Topology Shared Between Classical Metamaterials And Interacting Superconductors”. arXiv e-prints: arXiv:2207.10045.
. 2022. “Vortex Fermi Liquid And Strongly Correlated Quantum Bad Metal”. arXiv e-prints: arXiv:2209.04472.
. 2023. “The Conjugate Composite Fermi Liquid”. arXiv e-prints: arXiv:2311.16250.
. 2023. “Entanglement In A One-Dimensional Critical State After Measurements”. Phys. Rev. B 108: 165120. https://link.aps.org/doi/10.1103/PhysRevB.108.165120.
. 2023. “Evidence Of Frustrated Magnetic Interactions In A Wigner–Mott Insulator”. Nature Nanotechnology 18: 233–237. https://doi.org/10.1038%2Fs41565-022-01309-8.
. 2023. “Gauging Lie Group Symmetry In (2+1)D Topological Phases”. SciPost Phys. 14: 100. https://scipost.org/10.21468/SciPostPhys.14.5.100.
. 2023. “Loops In 4+1D Topological Phases”. SciPost Phys. 15: 001. https://scipost.org/10.21468/SciPostPhys.15.1.001.
. 2023. “Measurement-Induced Entanglement Transitions In Quantum Circuits Of Non-Interacting Fermions: Born-Rule Versus Forced Measurements”. arXiv e-prints: arXiv:2302.09094.
. 2023. “Quantum Criticality Under Decoherence Or Weak Measurement”. PRX Quantum 4. https://doi.org/10.1103%2Fprxquantum.4.030317.
. 2023. “Realizing A Tunable Honeycomb Lattice In Abba-Stacked Twisted Double Bilayer $\Mathrmwse_2$”. Phys. Rev. Res. 5: 043173. https://link.aps.org/doi/10.1103/PhysRevResearch.5.043173.
. 2024. “Disorder Operator And Rényi Entanglement Entropy Of Symmetric Mass Generation”. Phys. Rev. Lett. 132: 156503. https://link.aps.org/doi/10.1103/PhysRevLett.132.156503.
. 2024. “Field Theory Of Monitored, Interacting Fermion Dynamics With Charge Conservation”. arXiv e-prints: arXiv:2410.07317.
. 2024. “Higher-Form Symmetries Under Weak Measurement”. Phys. Rev. Lett. 132: 200402. https://link.aps.org/doi/10.1103/PhysRevLett.132.200402.
. 2024. “Intertwined Fractional Quantum Anomalous Hall States And Charge Density Waves”. Phys. Rev. B 109: 115116. https://link.aps.org/doi/10.1103/PhysRevB.109.115116.
. 2024. “Minimal Fractional Topological Insulator In Half-Filled Conjugate Moiré Chern Bands”. arXiv e-prints: arXiv:2403.07054.
. 2024. “Realizing String-Net Condensation: Fibonacci Anyon Braiding For Universal Gates And Sampling Chromatic Polynomials”. arXiv e-prints: arXiv:2406.12820.
. 2024. “Tapestry Of Dualities In Decohered Quantum Error Correction Codes”. Phys. Rev. B 110: 085158. https://link.aps.org/doi/10.1103/PhysRevB.110.085158.
. 2024. “Topological Modes In Monitored Quantum Dynamics”. arXiv e-prints: arXiv:2411.04191.
