activity
20172022
most citedA Freeform Dielectric Metasurface Modeling Approach Based on Deep Neural Networks

15 citations · 59 across the 9 of their papers we have counts for

collaborators

14 papers

quant-ph20225 cited

Quantum Proof of Work with Parametrized Quantum Circuits

Mikhail Y. Shalaginov, Michael Dubrovsky

Despite all the progress in quantum technologies over the last decade, there is still a dearth of practical applications for quantum computers with a small number of noisy qubits.…

physics.optics20212 cited

Wide field-of-view flat lens: an analytical formalism

Fan Yang, Sensong An, Mikhail Y. Shalaginov +3

Wide field-of-view (FOV) optics are widely used in various imaging, display, and sensing applications. While conventional wide FOV optics rely on cascading multiple elements to sup…

physics.optics20219 cited

Deep Convolutional Neural Networks to Predict Mutual Coupling Effects in Metasurfaces

Sensong An, Bowen Zheng, Mikhail Y. Shalaginov +13

Metasurfaces have provided a novel and promising platform for the realization of compact and large-scale optical devices. The conventional metasurface design approach assumes perio…

physics.optics20202 cited

Nonlinear Mid-infrared Metasurface based on a Phase-Change Material

Fuyong Yue, Riccardo Piccoli, Mikhail Y. Shalaginov +5

The mid-wave infrared (MWIR) spectral region (3-5 μm) is important to a vast variety of applications in imaging, sensing, spectroscopy, surgery, and optical communications. Efficie…

physics.app-ph202010 cited

Multi-level Electro-thermal Switching of Optical Phase-Change Materials Using Graphene

Carlos Ríos, Yifei Zhang, Mikhail Shalaginov +13

Reconfigurable photonic systems featuring minimal power consumption are crucial for integrated optical devices in real-world technology. Current active devices available in foundri…

physics.optics2020

Broadband Enhancement of On-chip Single Photon Extraction via Tilted Hyperbolic Metamaterials

Lian Shen, Xiao Lin, Mikhail Shalaginov +4

A fundamental building block for on-chip quantum photonics is a single-photon source with high repetition rates, which can enable many applications such as high-speed quantum commu…