Project supported by the Natural Science Foundation of Heilongjiang Province of China (Grant No.LH2020A014);the Graduate Students' Research Innovation Project of Harbin Normal University (Grant No.HSDSSCX2022-47)。
We conduct a theoretical analysis of the massive and tunable Goos–Hänchen(GH) shift on a polar crystal covered with periodical black phosphorus(BP)-patches in the THz range. The surface plasmon phonon polaritons(SPPP...
the Natural Science Foundation of Jiangxi Province,China(Grant Nos.20224BAB201025 and 20202BABL201018);the National Natural Science Foundation of China(Grant Nos.11864012,11764013,and 12164021).
We investigate the band structure and Goos–Hänchen-like shift in ferromagnetic mass graphene junction modulated by the circularly polarized light.It is found that both spin and valley-related energy gaps can be opene...
Project supported by the National Natural Science Foundation of China (Grant Nos.51575387 and 51827812)。
This paper puts forward a novel method of measuring the thin period-structure-film thickness based on the Bloch surface wave(BSW) enhanced Goos–Hanchen(GH) shift in one-dimensional photonic crystal(1DPC). The BSW phe...
the National Natural Science Foundation of China(Grant No.62075060);the Natural Science Foundation of Hunan Province(Grant No.2020JJ4033);the Research Foundation of Education Bureau of Hunan Province(Grant Nos.20A218 and 19A198);Science and Technology Plan Project of Hunan Province(Grant No.2019TP1014);the Hunan Province Innovation Foundation for Postgraduate Grant(Grant No.CX20211185)。
We establish the beam models of Goos–H?nchen(GH)and Imbert–Fedorov(IF)effects in tilted Weyl semimetals(WSMs),and systematically study the influences of Weyl cone tilting and chemical potential on the GH and IF shif...
supported by Science and Technology Nova Plan of Beijing City,China (Grant No. Z201100006820122);Fundamental Research Funds for the Central Universities,China。
We investigate a high sensitive chiral molecule detector based on Goos–Hanchen shift(S) in Kretschmann configuration involving chiral tri(diethylene glycol monobutyl) citrates(TDBCs). Fresnel equations and the statio...
Supported by the National Natural Science Foundation of China under Grant No 11774252;the Natural Science Foundation of Jiangsu Province under Grant No BK20161210;the Qing Lan project,the ‘333’ project under Grant No BRA2015353;the PAPD of Jiangsu Higher Education Institutions
We present a planar model system of a silica covered with a monolayer of nonlinear graphene to achieve a tunable Goos–H?nchen(GH) shift in the terahertz range. It is theoretically found that the transition between a ...
We report a theoretical demonstration for the creation of space–time holes based on birefringence of reflection,transmission, and the Goos–H?chen(GH) shifts from a chiral medium. We observed space–time holes in the...
supported by the National Natural Science Foundation of China(Nos.11704119,11647135,11474090,and 11704259);the Natural ScienceFoundation of Hunan Province(Nos.2018JJ3325,14JJ6007,and 2018JJ3557);the Scientific Research Fund of Hunan Provincial Education Department(Nos.17C0945,17B160,and 17B025)
In this Letter, we have shown that a giant Goos–H?nchen shift of a light beam reflected at terahertz frequencies can be achieved by using a composite structure, where monolayer graphene is coated on one-dimensional p...