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physics.optics2021

Refraction of space-time wave packets: III. Experiments at oblique incidence

Murat Yessenov, Alyssa M. Allende Motz, Basanta Bhaduri +1

The refraction of space-time (ST) wave packets at planar interfaces between non-dispersive, homogeneous, isotropic dielectrics exhibit fascinating phenomena, even at normal inciden…

physics.optics2021

Refraction of space-time wave packets: II. Experiments at normal incidence

Alyssa M. Allende Motz, Murat Yessenov, Basanta Bhaduri +1

The refraction of space-time (ST) wave packets offers many fascinating surprises with respect to conventional pulsed beams. In paper (I) of this sequence, we described theoreticall…

physics.optics2021

Refraction of space-time wave packets: I. Theoretical principles

Murat Yessenov, Basanta Bhaduri, Ayman F. Abouraddy

Space-time (ST) wave packets are pulsed optical beams endowed with precise spatio-temporal structure by virtue of which they exhibit unique and useful characteristics, such as prop…

physics.optics2020

Anomalous refraction of optical space-time wave packets

Basanta Bhaduri, Murat Yessenov, Ayman F. Abouraddy

Refraction at the interface between two materials is fundamental to the interaction of light with photonic devices and to the propagation of light through the atmosphere at large.…

physics.optics2019

Free-space optical delay line using space-time wave packets

Murat Yessenov, Basanta Bhaduri, Peter J. Delfyett +1

An optical buffer having a large delay-bandwidth-product -- a critical component for future all-optical communications networks -- remains elusive. Central to its realization is a…

physics.optics2019

Non-diffracting broadband incoherent space-time fields

Murat Yessenov, Basanta Bhaduri, H. Esat Kondakci +3

Space-time (ST) wave packets are coherent pulsed beams that propagate diffraction-free and dispersion-free by virtue of tight correlations introduced between their spatial and temp…