这是山西大学光电研究所、量子光学与光量子器件国家重点实验室在界面长程电荷序量子超晶格能带调控方面领衔研究的,继极具鲁棒性的量子霍尔效应(Nature Nanotechnology, 17, 1272, 2022)、激子增强关联绝缘态(Nature Communications, 14, 2136, 2023)等系列工作以来,又一创新研究成果。经过数十年发展,半导体工艺制...
这是山西大学光电研究所、量子光学与光量子器件国家重点实验室在界面长程电荷序量子超晶格能带调控方面领衔研究的,继极具鲁棒性的量子霍尔效应(Nature Nanotechnology, 17, 1272, 2022)、激子增强关联绝缘态(Nature Communications, 14, 2136, 2023)等系列工作以...
这是山西大学光电研究所、量子光学与光量子器件国家重点实验室在界面长程电荷序量子超晶格能带调控方面领衔研究的,继极具鲁棒性的量子霍尔效应(Nature Nanotechnology, 17, 1272, 2022)、激子增强关联绝缘态(Nature Communications, 14, 2136, 2023)等系列工作以来,又一创新研究成果。 1 经过数十年发展,半导体工艺制程...
这是山西大学光电研究所及量子光学与光量子器件国家重点实验室在界面长程电荷序量子超晶格能带调控领域的重要突破,继之前的量子霍尔效应(Nature Nanotechnology, 17, 1272, 2022)和激子增强关联绝缘态(Nature Communications, 14, 2136, 2023)等杰出工作之后,再次展现了其在科研领域的创新实力。经过数十年的发展与...
这是山西大学光电研究所、量子光学与光量子器件国家重点实验室在界面长程电荷序量子超晶格能带调控方面领衔研究的,继极具鲁棒性的量子霍尔效应(Nature Nanotechnology, 17, 1272, 2022)、激子增强关联绝缘态(Nature Communications, 14, 2136, 2023)等系列工作以来,又一创新研究成果。
. This work was also supported in part by the NIMS microstructural characterization platform through the Nanotechnology Platform program of the Ministry of Education, Culture, Sports, Science and Technology (MEXT), Japan (JPMXP09A17NM0075). We thank N. Tamai for assisting with the femtosecond ...
Thus, we inferred that the low melting temperatures of these short double helical segments near scaffold crossovers reduced their tendencies to hybridize, as supported by previous DNA nanotechnology sequence designs73,74. In further support of this interpretation, amongst all contiguous double stranded ...
Graphene has attracted intensive research interest in many fields, owing to its remarkable physicochemical properties. Nevertheless, its low dispersibility in most organic solvents and in water, and its tendency to aggregate, prevent full exploitation of
This work was performed in part at the San Diego Nanotechnology Infrastructure (SDNI) of UCSD, a member of the National Nanotechnology Coordinated Infrastructure, which is supported by the National Science Foundation (grant ECCS-2025752). Some schematics were created using BioRender....
这是量子光学与光量子器件国家重点实验室在界面长程电荷序量子超晶格能带调控方面领衔研究的,继极具鲁棒性的量子霍尔效应(Nature Nanotechnology, 17, 1272, 2022)、激子增强关联绝缘态(Nature Communications, 14, 2136, 2023)等系列工作以...