activity
20182021
most citedPlaquette versus ordinary -wave pairing in the -Hubbard model on a width 4 cylinder

90 citations · 105 across the 4 of their papers we have counts for

collaborators

7 papers

cond-mat.str-el2021

Response to comment on "Spin-lattice coupling and the emergence of the trimerized phase in the kagome antiferromagnet NaTiCl", Phys. Rev. Lett. 124, 167203 (2020)

Arpita Paul, Chia-Min Chung, Turan Birol +1

In the context of the kagome antiferromagnet NaTiCl, we respond to the comment by Khomskii et al. [D.I. Khomskii, T. Mizokawa and S.V. Streltsov, Phys. Rev. Lett.…

quant-ph202011 cited

lattice gauge theory in a ladder geometry

Jens Nyhegn, Chia-Min Chung, Michele Burrello

Under the perspective of realizing analog quantum simulations of lattice gauge theories, ladder geometries offer an intriguing playground, relevant for ultracold atom experiments.…

cond-mat.str-el202090 cited

Plaquette versus ordinary -wave pairing in the -Hubbard model on a width 4 cylinder

Chia-Min Chung, Mingpu Qin, Shiwei Zhang +2

The Hubbard model and its extensions are important microscopic models for understanding high- superconductivity in cuprates. In the model with next-nearest-neighbor hopping $…

cond-mat.str-el2019

Entanglement Renyi negativity across a finite temperature transition: a Monte Carlo study

Kai-Hsin Wu, Tsung-Cheng Lu, Chia-Min Chung +2

Quantum entanglement is fragile to thermal fluctuations, which raises the question whether finite temperature phase transitions support long-range entanglement similar to their zer…

cond-mat.str-el20194 cited

Minimally entangled typical thermal states with auxiliary matrix-product-state bases

Chia-Min Chung, Ulrich Schollwöck

Finite temperature problems in the strong correlated systems are important but challenging tasks. Minimally entangled typical thermal states (METTS) are a powerful method in the fr…

cond-mat.str-el2019

Absence of superconductivity in the pure two-dimensional Hubbard model

Mingpu Qin, Chia-Min Chung, Hao Shi +5

We study the superconducting pairing correlations in the ground state of the doped Hubbard model -- in its original form without hopping beyond nearest neighbor or other perturbing…