Accès ouvert
2026
preprint
OpenAlex
Shangfei Wu, Hengxin Tan, Di Wu, Mingshu Tan et autres
We employ polarization-resolved Raman spectroscopy combined with first-principles calculations to study the sodium-ion lattice dynamics in a sodium zig-zag ordered cobaltate compound Na$_{0.5}$CoO$_2$. We detect two sodium phonon modes for the first time, and their mode frequencies are consistent with first-principles phonon …
Accès ouvert
2026
article
OpenAlex
Mingshu Tan, Helin Mei, Keyi Li, Wei Ren et autres
Abstract As a prototypical transition metal dichalcogenide (TMD) semiconductor, MoS 2 exhibits diverse tunable electronic properties in low-dimensional systems, such as Ising superconductivity and charge density waves (CDWs). However, the intrinsic superconductivity of bulk MoS 2 remains underexplored. Here, we demonstrate carrier …
cn, cz
(code pays fourni par la source)
Accès ouvert
2025
preprint
OpenAlex
Ai-Mei Zhou, Ruihao Bi, Zhenghan Zhang, Luming Yang et autres
Chiral structures that produce asymmetric spin-phonon coupling can theoretically generate spin-phonon polarons -- quasiparticles exhibiting non-degenerate spin states with phonon displacements. These quasiparticles are speculated to be the origin of chirality-induced spin selectivity and presumably can display exotic dynamic behaviors. However, direct …
Accès ouvert
2024
preprint
OpenAlex
Ai-Mei Zhou, Denan Li, Mingshu Tan, Yanpei Lv et autres
The solid-state integration of molecular electron spin qubits could promote the advancement of molecular quantum information science. With highly ordered structures and rational designability, microporous framework materials offer ideal matrices to host qubits. They exhibit tunable phonon dispersion relations and spin distributions, …
cn, cz, gb
(code pays fourni par la source)
Accès ouvert
2024
preprint
OpenAlex
Ai-Mei Zhou, Denan Li, Mingshu Tan, Yanpei Lv et autres
The solid-state integration of molecular electron spin qubits could promote the advancement of molecular quantum information science. With highly ordered structures and rational designability, microporous framework materials offer ideal matrices to host qubits. They exhibit tunable phonon dispersion relations and spin distributions, …
cn, cz, gb
(code pays fourni par la source)
Accès ouvert
2024
preprint
OpenAlex
Ai-Mei Zhou, Denan Li, Mingshu Tan, Yanpei Lv et autres
The advancement of molecular quantum information science demands solid-state integration of molecular electron spin qubits. With highly ordered structures and rational designability, microporous framework materials offer ideal matrices to host qubits. They exhibit tunable phonon dispersion relations and spin distributions, enabling optimization …
cn, cz, gb
(code pays fourni par la source)