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相关论文: Quantum Goos-H\"{a}nchen shift and tunneling trans…

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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 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 describes a phenomenon in which a specularly-reflected beam is laterally translated along the reflecting surface such that the incident and reflected rays no longer intersect at the surface. Using a neutron…

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 study the Goos-H\"anchen (GH) shifts for transmitted Dirac fermions in gapped graphene through a single barrier structure having a time periodic oscillating component. Our analysis shows that the GH shifts in transmission for central…

介观与纳米尺度物理 · 物理学 2020-02-12 Bouchaib Lemaalem , Miloud Mekkaoui , Ahmed Jellal , Hocine Bahlouli

We theoretically investigate the control of the Goos-H\"anchen shift (GHS) of a reflected weak probe field in both parity-time ($\mathcal{PT}$)-symmetric and conventional optomechanical systems. The proposed scheme consists of a single…

光学 · 物理学 2026-04-03 Shah Fahad , Gao Xianlong

Graphene-assisted resonant transmission and enhanced Goos-H\"{a}nchen shift are investigated in a two-prism frustrated-total-internal-reflection configuration. Due to the excitation of surface plasmons induced by graphene in low terahertz…

量子物理 · 物理学 2026-01-13 Yi Chen , Yue Ban , Qi-Biao Zhu , Xi Chen

We consider reflection and transmission of 2D quantum wavepackets with phase vortices (also known in optics as spatiotemporal vortex pulses) at potential step-like, delta-function, and rectangular barriers. The presence of a vortex…

量子物理 · 物理学 2022-09-28 Maxim Mazanov , Konstantin Y. Bliokh

A known limitation of time-dependent mean-field approaches is a lack of quantum tunneling for collective motions such as in sub-barrier fusion reactions. As a first step toward a solution, a time-dependent model is considered using a…

核理论 · 物理学 2022-02-01 Akira Ono

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 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

By using an exact solution to the time-dependent Schr\"{o}dinger equation with a point source initial condition, we investigate both the time and spatial dependence of quantum waves in a step potential barrier. We find that for a source…

量子物理 · 物理学 2009-11-07 Jorge Villavicencio , Roberto Romo , Sukey Sosa y Silva

Using the energy spectrum of a system made of graphene subjected to a linear barrier potential, we study the Goos-H\"anshen shifts. The calculation is done by first determining the corresponding phase shifts via the transmission and…

介观与纳米尺度物理 · 物理学 2018-12-31 Miloud Mekkaoui , Radouane El Kinani , Ahmed Jellal

We investigate the Goos--H\"anchen (GH) shifts and group delay time of Dirac fermions traversing a rectangular electrostatic potential barrier in silicene. By analyzing their dependence on the incident angle, barrier height, barrier width,…

介观与纳米尺度物理 · 物理学 2026-03-25 Youssef Fattasse , Hocine Bahlouli , Clarence Cortes , David Laroze , Ahmed Jellal

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

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

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

We investigate theoretically the Goos-H\"anchen (GH) shift of a p-polarized terahertz beam incident on a 2D material surface with complex conductivity. Taking monolayer graphene to be the model material, we determine the dependence of GH…

We derive an exact analytical solution to the time-dependent Schr\"odinger equation for transmission of a Gaussian wave packet through an arbitrary potential of finite range. We consider the situation where the initial Gaussian wave packet…

量子物理 · 物理学 2012-05-03 Sergio Cordero , Gaston Garcia-Calderon

The tunneling of Gaussian wave packets has been investigated by numerically solving the one-dimensional Schr\"odinger equation. The shape of wave packets interacting with a square barrier has been monitored for various values of the barrier…

量子物理 · 物理学 2017-09-27 H. M. Krenzlin , J. Budczies , K. W. Kehr
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