activity
20192022
most citedExploring sensitivity of charge-exchange () reactions to the neutron density distribution

6 citations · 11 across the 2 of their papers we have counts for

collaborators

7 papers

nucl-th20226 cited

Exploring sensitivity of charge-exchange () reactions to the neutron density distribution

Jian Liu, Yunsheng Wang, Yonghao Gao +3

The determination of the nuclear neutron properties suffers from uncontrolled uncertainties, which attracted considerable attention recently, such as in the context o…

cond-mat.quant-gas2020

Topological chiral spin liquids and competing states in triangular lattice SU() Mott insulators

Xu-Ping Yao, Yonghao Gao, Gang Chen

SU() Mott insulators have been proposed and/or realized in solid-state materials and with ultracold atoms on optical lattices. We study the two-dimensional SU() antiferromagn…

cond-mat.str-el20205 cited

Some experimental schemes to identify quantum spin liquids

Yong Hao Gao, Gang Chen

Despite the apparent ubiquity and variety of quantum spin liquids in theory, experimental confirmation of spin liquids remains to be a huge challenge. Motivated by the recent surge…

cond-mat.str-el2020

Topological phase transition and nontrivial thermal Hall signatures in honeycomb lattice magnets

Yong Hao Gao, Xu Ping Yao, Gang Chen

We investigate spinon band topology and engineering from the interplay between long-ranged magnetic order and fractionalized spinons, as well as Zeeman coupling under external magn…

cond-mat.str-el2019

Thermal Hall signatures of non-Kitaev spin liquids in honeycomb Kitaev materials

Yong Hao Gao, Ciarán Hickey, Tao Xiang +2

Motivated by the recent surge of field-driven phenomena discussed for Kitaev materials, in particular the experimental observation of a finite thermal Hall effect and theoretical p…

cond-mat.str-el2019

Topological thermal Hall effect of "magnetic monopoles" in pyrochlore U(1) spin liquid

Xiao-Tian Zhang, Yong Hao Gao, Chunxiao Liu +1

"Magnetic monopole" is an exotic quantum excitation in pyrochlore U(1) spin liquid, and its emergence is purely of quantum origin and has no classical analogue. We predict topologi…