8 papers
High-Throughput Computational Discovery of Inverted Resistive Switching in Two-Dimensional Materials
Sanchali Mitra, Arnab Kabiraj, Benjamin W. J. Chen +8
Atomristors, non-volatile resistive switching devices based on two-dimensional (2D) monolayers, are promising building blocks for energy-efficient memory and neuromorphic computing…
Supermoiré Reconstruction and Topological Mosaics in Twisted Trilayer WSe and MoTe
Hai Meng, Yang Xu, Fengcheng Wu
We investigate lattice relaxation and band structures of helical and alternating twisted trilayer WSe and MoTe using machine-learning force fields and large-scale ab initio…
Mirror-Symmetry-Enforced Photonic Altermagnet
Chong Cao, Xiong-Xiong Xue, Yee Sin Ang +1
Altermagnets host momentum-dependent spin splitting without net magnetization, a symmetry-enforced band phenomenon whose photonic analogues have so far been realized only in square…
Supermoiré Chern mosaic in helical trilayer WSe2
Zhenyu Wang, Mingjie Zhang, Hai Meng +19
Helically twisted multilayers offer access to moiré physics beyond the single-superlattice paradigm, yet their correlated and topological transport properties remain largely unexpl…
Chips in the Flatland : 2D Semiconductors for Future Computing Electronic
Narin Trakarnvanich, Mitra Sanchali, Tong Su +6
As transistor scaling approaches its fundamental physical limits in the Angstrom era, two-dimensional (2D) semiconductors have emerged as the promising channel material candidates…
Tunable high- Janus-to-chiral bound states in the continuum in bilayer PhCs
Zhexing Dong, Shengxuan Xia, Yee Sin Ang +1
We propose a bilayer all-dielectric PhC for controlling Janus bound states in the continuum (BIC) and optical chirality through symmetry-selective perturbations. Starting from a sy…