scholarly journals Generation of spatially pure photon pairs in a multimode nonlinear waveguide using intermodal dispersion

Author(s):  
Michal Karpinski ◽  
Czeslaw Radzewicz ◽  
Konrad Banaszek
2014 ◽  
Vol 22 (7) ◽  
pp. 8624 ◽  
Author(s):  
Michał Jachura ◽  
Michał Karpiński ◽  
Czesław Radzewicz ◽  
Konrad Banaszek

Author(s):  
Alexander S. Solntsev ◽  
Andrey A. Sukhorukov ◽  
Dragomir Neshev ◽  
Yuri S. Kivshar

Author(s):  
Alexander S. Solntsev ◽  
Andrey A. Sukhorukov ◽  
Dragomir N. Neshev ◽  
Yuri S. Kivshar

Author(s):  
Francesco Lenzini ◽  
James Titchener ◽  
Sachin Kasture ◽  
Alexander N. Poddubny ◽  
Andreas Boes ◽  
...  

Universe ◽  
2021 ◽  
Vol 7 (6) ◽  
pp. 189
Author(s):  
Diego A. R. Dalvit ◽  
Wilton J. M. Kort-Kamp

Temporal modulation of the quantum vacuum through fast motion of a neutral body or fast changes of its optical properties is known to promote virtual into real photons, the so-called dynamical Casimir effect. Empowering modulation protocols with spatial control could enable the shaping of spectral, spatial, spin, and entanglement properties of the emitted photon pairs. Space–time quantum metasurfaces have been proposed as a platform to realize this physics via modulation of their optical properties. Here, we report the mechanical analog of this phenomenon by considering systems in which the lattice structure undergoes modulation in space and in time. We develop a microscopic theory that applies both to moving mirrors with a modulated surface profile and atomic array meta-mirrors with perturbed lattice configuration. Spatiotemporal modulation enables motion-induced generation of co- and cross-polarized photon pairs that feature frequency-linear momentum entanglement as well as vortex photon pairs featuring frequency-angular momentum entanglement. The proposed space–time dynamical Casimir effect can be interpreted as induced dynamical asymmetry in the quantum vacuum.


2021 ◽  
Author(s):  
Sunil Mittal ◽  
Venkata Vikram Orre ◽  
Elizabeth A. Goldschmidt ◽  
Mohammad Hafezi

Author(s):  
Afshin Shamsshooli ◽  
Cheng Guo ◽  
Michael Vasilyev ◽  
Francesca Parmigiani ◽  
Xiaoying Li

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