activity
20202023
most citedLow-loss tunable infrared plasmons in the high-mobility perovskite (Ba,La)SnO

6 citations · 14 across the 8 of their papers we have counts for

collaborators

8 papers

cond-mat.supr-con2023★ 1 cited

Ultra-thin Epitaxial MgB2 on SiC: Substrate Surface Polarity Dependent Properties

Weibing Yang, Leila Kasaei, Hussein Hijazi +9

High quality, ultrathin, superconducting films are required for advanced devices such as hot-electron bolometers, superconducting nanowire single photon detectors, and quantum appl…

cond-mat.mtrl-sci2022

Simultaneous imaging of dopants and free charge carriers by STEM-EELS

Hongbin Yang, Andrea Konečná, Xianghan Xu +4

Doping inhomogeneities in solids are not uncommon, but their microscopic observation and understanding are limited due to the lack of bulk-sensitive experimental techniques with hi…

cond-mat.mtrl-sci2022★ 1 cited

Electronic structure of Humble defects in Ge and GeSi

Shang Ren, Hongbin Yang, Sobhit Singh +3

The group-IV diamond-structure elements are known to host a variety of planar defects, including {001} planar defects in C and {001}, {111} and {113} planar defects in Si and Ge. A…

cond-mat.mtrl-sci2022★ 2 cited

Synthesis of an aqueous, air-stable, superconducting 1T'-WS monolayer-ink

Xiaoyu Song, Ratnadwip Singha, Guangming Cheng +7

Liquid-phase chemical exfoliation is ideal to achieve industry scale production of two-dimensional (2D) materials for a wide range of application such as printable electronics, cat…

cond-mat.mtrl-sci2021★ 2 cited

Humble planar defects in SiGe nanopillars

Hongbin Yang, Shang Ren, Sobhit Singh +5

We report a new \{001\} planar defect found in SiGe nanopillars. The defect structure, determined by atomic resolution electron microscopy, matches the Humble defect model proposed…

physics.app-ph2021★ 6 cited

Low-loss tunable infrared plasmons in the high-mobility perovskite (Ba,La)SnO

Hongbin Yang, Andrea Konečná, Xianghan Xu +4

BaSnO exhibits the highest carrier mobility among perovskite oxides, making it ideal for oxide electronics. Collective charge carrier oscillations, plasmons, are expected to ar…