Project supported by the National Natural Science Foundation of China(Grant No.62164005).
Combining theory and computation,we explore the Goos–H¨anchen(GH)effect for electrons in a single-layered semiconductor microstructure(SLSM)modulated by Dresselhaus spin–orbit coupling(SOC).GH displacement depends ...
the Taishan Scholar Program of Shandong Province,China(Grant No.ts20190939);the Independent Cultivation Program of Innovation Team of Jinan City(Grant No.2021GXRC043);the National Natural Science Foundation of China(Grant No.52173283).
Manipulation of the valley degree of freedom provides a new path for quantum information technology,but the real intrinsic large valley-polarization materials are rarely reported up to date.Here,we perform first-princ...
Project supported by the Innovation Program for Quantum Science and Technology (Grant No. 2021ZD0302003);the National Key Research and Development Program of China (Grant Nos. 2016YFA0301602, 2018YFA0307601, and 2021YFA1401700);the National Natural Science Foundation of China (Grant Nos. 12034011, 92065108, 11974224, 12022406, and 12004229);the Natural Science Basic Research Plan of Shaanxi Province, China (Grant No. 2019JQ058);the Fund for Shanxi “1331 Project” Key Subjects Construction。
We experimentally realize two-dimensional(2D) single-layer ultracold gases of ^(87)Rb by dynamically tuning the periodicity of a standing wave, known as accordion lattice. In order to load ^(87)Rb Bose-Einstein conden...
Project supported by the National Natural Science Foundation of China(Grant No.11625415);the Innovation Development Foundation of China Academy of Engineering Physics(Grant No.ZYCX1921-02)。
We theoretically provide a magnetic phase diagram for the single-layer(SL)CrBr_(3),which could be effectively tuned by both strain engineering and charge doping in SL-CrBr_(3).Through systematical first-principles cal...
supported by the National Natural Science Foundation of China(Grant Nos.11904312 and 11904313);the Project of Hebei Educational Department,China(Grant Nos.ZD2018015 and QN2018012);the Natural Science Foundation of Hebei Province,China(Grant No.A2019203507).
First-principles calculations and Monte Carlo simulations reveal that single-layer and double-layer VX_(2)(X=Cl,Br)can be tuned from antiferromagnetic(AFM)semiconductors to ferromagnetic(FM)state when biaxial tensile ...
National Key Research and Development Program of China(Grant Nos.2018YFA0704401,2017YFF0206103,and 2016YFA0203500);the National Natural Science Foundation of China(Grant Nos.61922002,91850103,11674014,61475005,11527901,11525414,and 91850111);the Beijing Natural Science Foundation,China(Grant No.Z180015).
Narrowband and high-transmission optical filters are extensively used in color display technology, optical information processing, and high-sensitive sensing. Because of large ohmic losses in metallic nanostructures, ...
Project supported by the National Natural Science Foundation of China(Grant No.61372034)
Circularly polarized (CP) lens antenna has been applied to numerous wireless communication systems based on its unique advantages such as high antenna gain, low manufacturing cost, especially stable data transmissio...
Black phosphorus (BP) has received attention due to its own higher carrier mobility and layer dependent electronic properties, such as direct band gap. Interestingly, the single layer black phosphorus (SLBP) has h...
supported by the National Natural Science Foundation of China(Grant Nos.61390501,61471337,61622116,and 51325204);the National Key Scientific Instrument and Equipment Development Project of China(Grant No.2013YQ1203451);the CAS Hundred Talents Program,the Transregional Collaborative Research Center TRR 61(Grant No.21661132006);the National Supercomputing Center in Tianjin.A portion of the research was performed in CAS Key Laboratory of Vacuum Physics
Here we report the thermo-controllable self-assembled structures of single-layer 4, 4''-diamino-p-terphenyl(DAT)molecules on Au(110), which are investigated by scanning tunneling microscopy(STM) combined with ...
Project supported by the National Natural Science Foundation of China(Grant No.61372034)
Phase gradient metasurfaces(PGMS) offer a fascinating ability to control the amplitude and phase of the electromagnetic(EM) waves on a subwavelength scale, resulting in new applications of designing novel microwav...