The capability to generate and manipulate quantum states in high-dimensional Hilbert spaces is a crucial step for the development of quantum technologies, from quantum communication to quantum computation. One-dimensional quantum walk dynamics represents a valid tool in the task of engineering arbitrary quantum states. Here we affirm such potential in a linear-optics platform that realizes discrete-time quantum walks in the orbital angular momentum degree of freedom of photons. Different classes of relevant qudit states in a six-dimensional space are prepared and measured, confirming the feasibility of the protocol. Our results represent a further investigation of quantum walk dynamics in photonics platforms, paving the way for the use of such a quantum state-engineering toolbox for a large range of applications.

Experimental Engineering of Arbitrary Qudit States with Discrete-Time Quantum Walks

2019

Abstract

The capability to generate and manipulate quantum states in high-dimensional Hilbert spaces is a crucial step for the development of quantum technologies, from quantum communication to quantum computation. One-dimensional quantum walk dynamics represents a valid tool in the task of engineering arbitrary quantum states. Here we affirm such potential in a linear-optics platform that realizes discrete-time quantum walks in the orbital angular momentum degree of freedom of photons. Different classes of relevant qudit states in a six-dimensional space are prepared and measured, confirming the feasibility of the protocol. Our results represent a further investigation of quantum walk dynamics in photonics platforms, paving the way for the use of such a quantum state-engineering toolbox for a large range of applications.
2019
Istituto dei Sistemi Complessi - ISC
Inglese
122
2
020503-1
020503-7
7
http://www.scopus.com/inward/record.url?eid=2-s2.0-85060657000&partnerID=q2rCbXpz
Degrees of freedom (mechanics)
Light
Quantum computers
Quantum optics
11
info:eu-repo/semantics/article
262
Giordani, T; Polino, E; Emiliani, S; Suprano, A; Innocenti, L; Majury, H; Marrucci, L; Paternostro, M; Ferraro, A; Spagnolo, N; Sciarrino, F
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/352617
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