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Optics Communications, ISSN 0030-4018, 02/2014, Volume 313, pp. 123 - 127
In recent years, the fantastic phenomena of negative Goos–Hänchen shifts have been studied in several optics experiments with the positive-refractivity... 
Giant Goos–Hänchen shifts | Nano-metal-film | Negative Goos–Hänchen shifts | Negative Goos-Hänchen shifts | Giant Goos-Hänchen shifts | BEAM | RESONANCE | Negative Goos-Hanchen shifts | DISPLACEMENTS | OPTICS | Giant Goos-Hanchen shifts | TOTAL INTERNAL-REFLECTION | THIN-FILM
Journal Article
Physics Letters A, ISSN 0375-9601, 07/2016, Volume 380, Issue 29-30, pp. 2329 - 2333
•The GH shifts have higher light intensity in the proposed structure.•The GH shifts can be tuned by graphene's chemical potential and magnetic field.•At... 
Gaussian beam | Spatial Goos–Hänchen shift | Angular Goos–Hänchen shift | Graphene | Gyroelectric slab | BEAM | PLASMONICS | PHYSICS, MULTIDISCIPLINARY | DIELECTRIC INTERFACE | Spatial Goos-Hanchen shift | Angular Goos-Hanchen shift | ANGLE | Magnetic fields | Graphite | Analysis
Journal Article
Journal of the Optical Society of America B: Optical Physics, ISSN 0740-3224, 11/2018, Volume 35, Issue 11, pp. 2889 - 2894
We theoretically investigate the Imbert-Fedorov (IF) shifts of a reflected light beam from the dielectric interface containing a planar anisotropic monolayer... 
WEAK MEASUREMENTS | OPTICS | GOOS-HANCHEN
Journal Article
Journal of Optics (United Kingdom), ISSN 2040-8978, 01/2013, Volume 15, Issue 1, p. 14001
Journal Article
by Ma, PJ and Gao, L
OPTICS EXPRESS, ISSN 1094-4087, 05/2017, Volume 25, Issue 9, pp. 9676 - 9688
The lateral shifts of the wave reflected and transmitted from PT-symmetric one-dimensional multilayer-structures are investigated near the... 
BEAM | REAL | GOOS-HANCHEN SHIFT | REFLECTION | OPTICS
Journal Article
Optics Communications, ISSN 0030-4018, 07/2016, Volume 370, pp. 81 - 84
In this work, an observation of Goos–Hänchen shift in the terahertz range on a metal surface with a change in temperature is reported. A s-polarized terahertz... 
Temperature | Goos–Hänchen shift | Terahertz | Goos-Hänchen shift | GRATINGS | WAVE | REFLECTION | Goos-Hanchen shift | OPTICS
Journal Article
Optics Express, ISSN 1094-4087, 09/2018, Volume 26, Issue 18, pp. 22934 - 22943
The Imbert-Fedorov (IF) shift is defined as the transverse shift of barycenter of the entire beam when a circular or elliptically polarized incident beam is... 
VALUE AMPLIFICATION | PARTIAL REFLECTION | OPTICS | GOOS-HANCHEN
Journal Article
Journal of the Optical Society of America B: Optical Physics, ISSN 0740-3224, 02/2019, Volume 36, Issue 2, pp. 383 - 390
We propose a scheme to modify the susceptibility of a two-level coherently driven atomic medium enclosed inside a cavity and to enhance the Goos-Hanchen shift... 
GOOS-HANCHEN SHIFTS | REFLECTION | OPTICS | INTERFACE
Journal Article
Optics Letters, ISSN 0146-9592, 08/2011, Volume 36, Issue 16, pp. 3200 - 3202
We report the first measurement of the spin Hall effect of light (SHEL) on an air-metal interface. The SHEL is a polarization-dependent out-of-plane shift on... 
BEAM | SHIFTS | OPTICS | GOOS-HANCHEN | Physics - Optics
Journal Article
Optics Communications, ISSN 0030-4018, 12/2019, Volume 452, pp. 227 - 232
In this paper, the Goos–Hänchen (GH) shift resulting from the graphene surface plasmon in a modified Otto configuration is investigated theoretically. Through... 
Otto configuration | Surface plasmon | Graphene | Goos–Hänchen shift | BEAM | DIMENSIONAL PHOTONIC CRYSTALS | Goos-Hanchen shift | OPTICS | PROPAGATION | GIANT
Journal Article
中国光学快报:英文版, ISSN 1671-7694, 2017, Volume 15, Issue 2, pp. 68 - 72
The spin Hall effect of light (SHEL) can be observed by the dark strip resulting from weak measurement. We find that the SHEL of a partially coherent beam... 
OPTICS | GOOS-HANCHEN
Journal Article
Journal of Modern Optics, ISSN 0950-0340, 04/2018, Volume 65, Issue 7, pp. 837 - 846
Optical weak measurements are a powerful tool for measuring small shifts of optical paths. When applied to the measurement of the Goos-Hänchen shift, in... 
Goos-Hänchen shift | Optical weak measurement | Goos–Hänchen shift | SHIFT | REFLECTION | LIGHT-BEAM | Goos-Hanchen shift | SPIN | DIELECTRIC INTERFACE | LATERAL DISPLACEMENT | COMPONENT | OPTICS | Optical paths | Dielectric strength | Destructive testing | Gaussian beams (optics)
Journal Article
Optics Communications, ISSN 0030-4018, 11/2014, Volume 330, pp. 169 - 174
A new theoretical approach towards the tuning of Goos–Hänchen shift and Imbert–Fedorov shift for the reflected light beam is observed, designed and simulated... 
Imbert–Fedorov shift | Kretschmann–Raether geometry | Liquid crystal | Long range surface plasmon | Goos–Hänchen shift | Imbert-Fedorov shift | Goos-Hänchen shift | Kretschmann-Raether geometry | TEMPERATURE-DEPENDENCE | LIGHT | SILVER | REFLECTION | WAVES | MODES | Goos-Hanchen shift | DISPLACEMENT | OPTICS | SLAB | Network switches
Journal Article
Physics Letters A, ISSN 0375-9601, 2011, Volume 375, Issue 47, pp. 4198 - 4202
We report on a theoretical study of spin-dependent Goos–Hänchen (GH) shift of electrons in antiparallel double δ-magnetic-barrier (MB) nanostructure under an... 
Magnetic barrier nanostructure | Spin polarization | Spin beam splitter | Goos–Hänchen effect | Goos-Hänchen effect | MAGNETORESISTANCE | PHYSICS, MULTIDISCIPLINARY | SPINTRONICS | GAS | Goos-Hanchen effect | POLARIZATION
Journal Article
Optics Communications, ISSN 0030-4018, 12/2019, Volume 453, p. 124414
This study proposes and demonstrates a new approach using aperture total internal reflection (A-TIR) by means an aperture in front of a detector to... 
Fresnel equation | Fingerprinting | Microcontact printing | Micro droplet | Aperture total internal reflection | Goos–Hänchen shift | SHIFT | Goos-Hanchen shift | FILM | LIGHT | REFRACTIVE-INDEX | TOPOGRAPHY | OPTICS
Journal Article
by You, Q and Li, ZF and Jiang, LY and Guo, J and Dai, XY and Xiang, YJ
JOURNAL OF PHYSICS D-APPLIED PHYSICS, ISSN 0022-3727, 01/2020, Volume 53, Issue 1, p. 15107
Surface plasmon resonance (SPR) with bulk Dirac semimetals (BDS) has been proposed to enhance the Goos-Hanchen (GH) shift. It is found that a large positive... 
Dirac semimetal | surface plasmons | PHYSICS, APPLIED | Goos-Hanchen shift | MOBILITY
Journal Article
by Wang, Y and Liu, Y and Wang, B
Physica E: Low-dimensional Systems and Nanostructures, ISSN 1386-9477, 09/2013, Volume 53, pp. 186 - 192
Resonant transmission and Goos–Hänchen (GH) shift for Dirac fermion beams tunneling through graphene double velocity barrier structures (DVBs) are investigated... 
Velocity barrier | Graphene | Resonant tunneling | Goos–Hänchen shift | Goos-Hänchen shift | PHYSICS, CONDENSED MATTER | NANOSCIENCE & NANOTECHNOLOGY | Goos-Hanchen shift | Graphite
Journal Article
Physica E: Low-dimensional Systems and Nanostructures, ISSN 1386-9477, 04/2015, Volume 68, pp. 53 - 58
We have explored the zero, positive and negative quantum Goos–Hänchen (GH) shifts of the transmitted Dirac carriers in graphene through a potential barrier... 
Graphene | Goos–Hänchen shift | Transmission | Goos-Hänchen shift | PHYSICS, CONDENSED MATTER | NANOSCIENCE & NANOTECHNOLOGY | Goos-Hanchen shift | Magnetic fields | Graphite
Journal Article