activity
20242026
most citedCorrelated topological flat bands in rhombohedral graphite

16 citations · 26 across the 5 of their papers we have counts for

collaborators

7 papers

cond-mat.mtrl-sci2026

Multiple Layer-Selective Polar Charge Density Waves in

Wen-Han Dong, Wenhui Duan, Yong Xu +1

is a polar charge density wave (CDW) material, with giant thermal hysteresis and non-volatile state switching under electric and optical fields, attracting great…

cond-mat.supr-con20253 cited

Lattice-decoupled rotatable stripe-like charge order within the strange metal phase of 2M-WS2

Kebin Xiao, Yunkai Guo, Daran Fu +11

In quantum materials, charge orders typically stabilize in specific crystallographic orientations, though their formation mechanisms may vary. Here, using low-temperature scanning…

cond-mat.mtrl-sci20251 cited

Multiple Photon Field-induced Topological States in Bulk HgTe

Dongbin Shin, I-Te Lu, Benshu Fan +6

Strong light-matter interactions can be exploited to modify properties of quantum materials both in and out of thermal equilibrium. Recent studies suggest electromagnetic fields in…

cond-mat.supr-con2025

Topological surface states in γ-PtBi evidenced by scanning tunneling microscopy

Yunkai Guo, Jingming Yan, Wen-Han Dong +11

For the application of topological materials, the specific location of their topological surface states with respect to the Fermi level are important. γ-PtBi2 has been demonstrated…

cond-mat.mes-hall20256 cited

Floquet-Volkov interference in a semiconductor

Changhua Bao, Haoyuan Zhong, Benshu Fan +9

Intense light-field can dress both Bloch electrons inside crystals and photo-emitted free electrons in the vacuum, dubbed as Floquet and Volkov states respectively. These quantum s…

cond-mat.mtrl-sci2025

Floquet optical selection rules in black phosphorus

Benshu Fan, Umberto De Giovannini, Hannes Hübener +4

Optical selection rules endorsed by symmetry are crucial for understanding the optical properties of quantum materials and the associated ultrafast spectral phenomena. Here, we int…