| Literature DB >> 30720314 |
Taira Giordani1, Emanuele Polino1, Sabrina Emiliani1, Alessia Suprano1, Luca Innocenti2, Helena Majury2, Lorenzo Marrucci3, Mauro Paternostro2, Alessandro Ferraro2, Nicolò Spagnolo1, Fabio Sciarrino1,4.
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.Year: 2019 PMID: 30720314 DOI: 10.1103/PhysRevLett.122.020503
Source DB: PubMed Journal: Phys Rev Lett ISSN: 0031-9007 Impact factor: 9.161