activity
20192021
most citedOptical secret sharing with cascaded metasurface holography

336 citations · 994 across the 5 of their papers we have counts for

collaborators

7 papers

physics.optics2021336 cited

Optical secret sharing with cascaded metasurface holography

Philip Georgi, Qunshuo Wei, Basudeb Sain +4

Secret sharing is a well-established cryptographic primitive for storing highly sensitive information like encryption keys for encoded data. It describes the problem of splitting a…

physics.optics2020103 cited

All-dielectric silicon metalens for two-dimensional particle manipulation in optical tweezers

Teanchai Chantakit, Christian Schlickriede, Basudeb Sain +4

Dynamic control of compact chip-scale contactless manipulation of particles for bioscience applications remains a challenging endeavor, which is restrained by the balance between t…

physics.optics2020114 cited

A Dielectric Metasurface Optical Chip for the Generation of Cold Atoms

Lingxiao Zhu, Xuan Liu, Basudeb Sain +12

Compact and robust cold atom sources are increasingly important for quantum research, especially for transferring cutting-edge quantum science into practical applications. In this…

physics.optics2020298 cited

Polarization-Encrypted Orbital Angular Momentum Multiplexed Metasurface Holography

Hongqiang Zhou, Basudeb Sain, Yongtian Wang +7

Metasurface holography has the advantage of realizing complex wavefront modulation by thin layers together with the progressive technique of computer-generated holographic imaging.…

physics.optics2020143 cited

Nonlinear imaging with all-dielectric metasurfaces

Christian Schlickriede, Sergey Kruk, Lei Wang +3

Nonlinear metasurfaces incorporate many of the functionalities of their linear counterparts such as wavefront shaping but simultaneously they perform nonlinear optical transformati…

physics.optics2020

Miniaturized Metalens Based Optical Tweezers on Liquid Crystal Droplets for Lab-on-a-Chip Optical Motors

Satayu Suwannasopon, Fabian Meyer, Christian Schlickriede +5

Surfaces covered with layers of ultrathin nanoantenna structures, so-called metasurfaces, have recently been proven capable of completely controlling phase of light. Metalenses hav…