Anomalous diffraction of matter waves with minimal quantum metasurfaces

Author:

Valagiannopoulos ConstantinosORCID

Abstract

AbstractIn the last few years, there is a huge upsurge in the number of closed deals regarding quantum technologies for materials, computing, communication and instrumentation. Such a trend has inevitably affected the research funding market; thus, large state initiatives are taken that are directly expected to drive the formulation of novel research concepts and the development of quantum device prototypes from sensors and circuitry to quantum memory and repeaters. A fundamental operation behind all these applications is the effective steering of electrons, constituting matter waves, along specific directions and with certain magnitudes, due to development of various reflective and refractive orders. The objective of this study is to optimize the simplest structure that supports such anomalous diffraction, namely a quantum metasurface comprising cylindrical rods embedded in suitable crystalline matter. Several highly-performing designs from these minimal setups are proven to work exceptionally as multiport components, employable to a variety of quantum engineering implementations.

Funder

Nazarbayev University

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Atomic and Molecular Physics, and Optics,Control and Systems Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Ultra-Thin Wideband Polarization Converting Metasurface for Complete KU and K Bands Microwave Applications;2023 IEEE International Conference on Signal Processing, Communications and Computing (ICSPCC);2023-11-14

2. Electron Quantum Optics with Beam Splitters and Waveguides in Dirac Matter;Advanced Quantum Technologies;2023-07-12

3. Meta-bubbles: Spherical metasurfaces as electromagnetic energy accumulators;Journal of Applied Physics;2022-03-07

4. Wideband Enhancement of Quantum Scattering from Material Impurities;Physical Review Applied;2021-06-03

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