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Electromagnetically induced transparency metamaterials: theories, designs and applications
L Zhu, L Dong - Journal of Physics D: Applied Physics, 2022 - iopscience.iop.org
Electromagnetically induced transparency (EIT) stems from a quantum system, where an
opaque atomic medium appears the narrow transparent state within a wide absorption area …
opaque atomic medium appears the narrow transparent state within a wide absorption area …
Active modulation of electromagnetically induced transparency analogue in terahertz hybrid metal-graphene metamaterials
Metamaterial analogues of electromagnetically induced transparency (EIT) have been
intensively studied and widely employed for slow light and enhanced nonlinear effects. In …
intensively studied and widely employed for slow light and enhanced nonlinear effects. In …
Temporal and spatial interference between four-wave mixing and six-wave mixing channels
Y Zhang, U Khadka, B Anderson, M **ao - Physical review letters, 2009 - APS
Using phase control between four-wave mixing (FWM) and six-wave mixing (SWM)
channels in a four-level atomic system, we demonstrate temporal and spatial interferences …
channels in a four-level atomic system, we demonstrate temporal and spatial interferences …
All-dielectric metamaterial analogue of electromagnetically induced transparency and its sensing application in terahertz range
T Ma, Q Huang, H He, Y Zhao, XI Lin, Y Lu - Optics Express, 2019 - opg.optica.org
A novel electromagnetically induced transparency (EIT) all-dielectric metamaterial is
proposed, fabricated, and characterized. The unit cell of the proposed metamaterial …
proposed, fabricated, and characterized. The unit cell of the proposed metamaterial …
Efficient spatiotemporal-vortex four-wave mixing in a semiconductor nanostructure
We propose a scheme to demonstrate spatiotemporal-vortex four-wave mixing (FWM) in an
asymmetric semiconductor double quantum-well nanostructure. It is found that the orbital …
asymmetric semiconductor double quantum-well nanostructure. It is found that the orbital …
Proposal for efficient two-dimensional atom localization using probe absorption in a microwave-driven four-level atomic system
C Ding, J Li, X Yang, D Zhang, H **ong - Physical Review A—Atomic …, 2011 - APS
The behavior of two-dimensional (2D) atom localization is explored by monitoring the probe
absorption in a microwave-driven four-level atomic medium under the action of two …
absorption in a microwave-driven four-level atomic medium under the action of two …
Spatially structured transparency and transfer of optical vortices via four-wave mixing in a quantum-dot nanostructure
We propose a scheme to generate structured light using a medium consisting of
semiconductor quantum dots via four-wave mixing (FWM). We consider a four-level quantum …
semiconductor quantum dots via four-wave mixing (FWM). We consider a four-level quantum …
High-precision two-dimensional atom localization via quantum interference in a tripod-type system
Z Wang, B Yu - Laser Physics Letters, 2014 - iopscience.iop.org
A scheme is proposed for high-precision two-dimensional atom localization in a four-level
tripod-type atomic system via measurement of the excited state population. It is found that …
tripod-type atomic system via measurement of the excited state population. It is found that …
Control of space-dependent four-wave mixing in a four-level atomic system
We propose a scheme to demonstrate the manipulation of space-dependent four-wave
mixing (FWM) in a four-level atomic system. By adjusting the detuning of the control field …
mixing (FWM) in a four-level atomic system. By adjusting the detuning of the control field …
Enhanced intensity-difference squeezing via energy-level modulations in hot atomic media
Narrow-band intensity-difference squeezing (IDS) beams have important applications in
quantum metrology and gravitational wave detection. The best way to generate narrow-band …
quantum metrology and gravitational wave detection. The best way to generate narrow-band …