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相关论文: Observation of a giant Goos-H\"anchen shift for ma…

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The longitudinal and the transverse beam shifts, namely, the Goos-H\"anchen (GH) and the Spin-Hall (SH) shifts are usually observed at planar interfaces. It has recently been shown that the transverse SH shift may also arise due to…

光学 · 物理学 2015-06-19 J. Soni , S. Mansha , S. Dutta Gupta , A. Banerjee , N. Ghosh

Applying Artmann's formula to the TE-polarized incident waves, we theoretically show that the Goos-H\"{a}nchen (GH) shifts near the angle of the pseudo-Brewster dip of the reflection from a slab of chiral metamaterial can be greatly…

光学 · 物理学 2009-06-26 W. T. Dong , Lei Gao , C. W. Qiu

We study giant Goos-H\"anchen (GH) shift in reflection from a near-symmetric coupled waveguide structure. We show that broken spatial symmetry can lead to GH shift with different signs for illumination from the opposite ends, a direct…

光学 · 物理学 2011-05-25 Madhuri Kumari , S Dutta Gupta

We consider a matter wave packet of cold atom gas impinging upon a step potential created by the optical light field. In the presence of spin-orbit (SO) coupling, the atomic eigenstates contain two types of evanescent states, one of which…

量子气体 · 物理学 2015-03-25 Lu Zhou , Jie-Li Qin , Zhihao Lan , Guangjiong Dong , Weiping Zhang

We have investigated that the Goos-H\"anchen (GH) shifts in frustrated total internal reflection (FTIR) studied with wave packet propagation. In the first-order approximation of the transmission coefficient, the GH shift is exactly the…

光学 · 物理学 2009-08-26 Xi Chen , Chun-Fang Li , Rong-Rong Wei , Yan Zhang

The Goos-H\"anchen (GH) shift becomes giant in resonant photonic structures, making it promising for refractive index sensors with ultimate sensitivities. We provide here a complete formalism to analytically describe the GH shift and its…

The Goos-H\"anchen (G-H) effect for neutron reflection from condensed matter is considered. An experiment to quantify the effect is proposed. The relation of G-H shift to the neutron coherence length is considered.

光学 · 物理学 2015-06-26 V. K. Ignatovich

We introduce the technique of Entangled-Beam Reflectometry for extracting spatially correlated (magnetic or non-magnetic) information from material surfaces or thin films. Our amplitude- and phase-sensitive technique exploits the coherent…

光学 · 物理学 2024-01-23 Q. Le Thien , R. Pynn , G. Ortiz

We theoretically investigate the Goos-H\"{a}nchen (GH) effect of spin-wave beams reflected from the interface between two ferromagnetic films with different Dzyaloshinskii-Moriya interactions (DMIs). The formula of the GH shift as functions…

介观与纳米尺度物理 · 物理学 2019-08-29 Zhenyu Wang , Yunshan Cao , Peng Yan

We present measurements of the Goos-H\"anchen shift in a two-dimensional dielectric microwave cavity. Microwave beams are generated by a suitable superposition of the spherical waves generated by an array of antennas; the resulting beams…

A theoretical analysis of the lateral displacement (Goos-H\"anchen shift) of spatially limited beams reflected from Attenuated Total Reflection (ATR) devices in the Otto configuration is presented when backward surface plasmon polaritons…

光学 · 物理学 2015-04-29 Mariana Zeller , Mauro Cuevas , Ricardo A. Depine

In recent years, the fantastic phenomena of negative Goos-H\"anchen shifts were studied in several optics experiments with the positive refractivity materials, which is predicted by many scientists through both classical physics or quantum…

光学 · 物理学 2012-12-13 Jiang Rong , Huang Zhi-Xun , Lu Gui-Zhen

We report giant Goos-H\"{a}nchen shifts [Goos and H\"{a}nchen, Ann. Phys. 436, 333 (1947)] for electron beams tunneling through graphene double barrier structures. We find that inside the transmission gap for the single barrier, the shift…

介观与纳米尺度物理 · 物理学 2012-08-14 Yu Song , Han-Chun Wu , Yong Guo

We explore the analogy between following the motion of a reflected wave packet, and a quantum measurement of the spatial delay imposed on the particle by the scattering potential. It is shown that converting such delays into temporal…

量子物理 · 物理学 2025-09-29 D. Sokolovski , A. Uranga , Y. Caudano

We report the first observation of the Goos-H$\rm \ddot{\textbf{a}}$nchen shift of a light beam incident on a metal surface. This phenomenon is particularly interesting because the Goos-H$\rm \ddot{\textbf{a}}$nchen shift for $p$ polarized…

光学 · 物理学 2009-11-13 M. Merano , A. Aiello , G. W. 't Hooft , M. P. van Exter , E. R. Eliel , J. P. Woerdman

When a three-level atomic wavepacket is obliquely incident on a "edium slab" consisting of two far-detuned laser beams, there exists lateral shift between reflection and incident points at the surface of a "medium slab", analogous to…

量子物理 · 物理学 2014-07-16 Zhenglu Duan , Liyun Hu , XueXiang Xu , Cunjin Liu

Since the discovery of the Goos-H\"anchen (GH) shift in the 1940s, its deep connections to Fourier transforms and causality have led to widespread interest and applications in optics, acoustics, and quantum mechanics. Control of the shift…

光学 · 物理学 2025-06-23 Zhuolin Wu , Weiming Zhen , Zhi-Cheng Ren , Xi-Lin Wang , Hui-Tian Wang , Jianping Ding

We present a theoretical investigation of the Goos-H\"anchen effect, i.e., the lateral shift of the light beam transmitted through one-dimensional biperiodic multilayered photonic systems consisting of equidistantmagnetic layers separated…

介观与纳米尺度物理 · 物理学 2018-11-27 Yu. S. Dadoenkova , N. N. Dadoenkova , J. W. Kłos , M. Krawczyk , I. L. Lyubchanskii

The main object of investigation in magnonics, spin waves (SWs) are promising information carriers. Presently the most commonly studied are plane wave-like SWs and SWs propagating in confined structures, such as waveguides. Here we consider…

介观与纳米尺度物理 · 物理学 2017-01-20 P. Gruszecki , M. Mailyan , O. Gorobets , M. Krawczyk

We consider the propagation of a matter wavepacket of two-level atoms through a square potential created by a super-Gaussian laser beam. We explore the matter wave analog of Goos-H\"{a}nchen shift within the framework of atom optics where…

量子物理 · 物理学 2008-06-18 Jianhua Huang , Zhenglu Duan , Hong Y. Ling , Weiping Zhang
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