Reconfigurable unitary transformations of optical beam arrays

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Martinez-Becerril, Aldo C., Luo, Siwei, Li, Liu, Pagé, Jordan, Giner, Lambert, Abrahao, Raphael A., Lundeen, Jeff S.
Natura: Preprint
Pubblicazione: 2024
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866916317768974336
author Martinez-Becerril, Aldo C.
Luo, Siwei
Li, Liu
Pagé, Jordan
Giner, Lambert
Abrahao, Raphael A.
Lundeen, Jeff S.
author_facet Martinez-Becerril, Aldo C.
Luo, Siwei
Li, Liu
Pagé, Jordan
Giner, Lambert
Abrahao, Raphael A.
Lundeen, Jeff S.
contents Spatial transformations of light are ubiquitous in optics, with examples ranging from simple imaging with a lens to quantum and classical information processing in waveguide meshes. Multi-plane light converter (MPLC) systems have emerged as a platform that promises completely general spatial transformations, i.e., a universal unitary. However until now, MPLC systems have demonstrated transformations that are far from general, e.g., converting from a Gaussian to Laguerre-Gauss mode. Here, we demonstrate the promise of an MLPC, the ability to impose an arbitrary unitary transformation that can be reconfigured dynamically. Specifically, we consider transformations on superpositions of parallel free-space beams arranged in an array, which is a common information encoding in photonics. We experimentally test the full gamut of unitary transformations for a system of two parallel beams and make a map of their fidelity. We obtain an average transformation fidelity of $0.85 \pm 0.03$. This high-fidelity suggests MPLCs are a useful tool implementing the unitary transformations that comprise quantum and classical information processing.
format Preprint
id arxiv_https___arxiv_org_abs_2407_06981
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Reconfigurable unitary transformations of optical beam arrays
Martinez-Becerril, Aldo C.
Luo, Siwei
Li, Liu
Pagé, Jordan
Giner, Lambert
Abrahao, Raphael A.
Lundeen, Jeff S.
Quantum Physics
Optics
Spatial transformations of light are ubiquitous in optics, with examples ranging from simple imaging with a lens to quantum and classical information processing in waveguide meshes. Multi-plane light converter (MPLC) systems have emerged as a platform that promises completely general spatial transformations, i.e., a universal unitary. However until now, MPLC systems have demonstrated transformations that are far from general, e.g., converting from a Gaussian to Laguerre-Gauss mode. Here, we demonstrate the promise of an MLPC, the ability to impose an arbitrary unitary transformation that can be reconfigured dynamically. Specifically, we consider transformations on superpositions of parallel free-space beams arranged in an array, which is a common information encoding in photonics. We experimentally test the full gamut of unitary transformations for a system of two parallel beams and make a map of their fidelity. We obtain an average transformation fidelity of $0.85 \pm 0.03$. This high-fidelity suggests MPLCs are a useful tool implementing the unitary transformations that comprise quantum and classical information processing.
title Reconfigurable unitary transformations of optical beam arrays
topic Quantum Physics
Optics
url https://arxiv.org/abs/2407.06981