Frontiers in Optics / Laser Science 2018
DOI: 10.1364/fio.2018.jw3a.72
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Quantum State Engineering Using One-dimensional Discrete-time Quantum Walks

Abstract: Quantum state preparation in high-dimensional systems is an essential requirement for many quantum-technology applications. The engineering of an arbitrary quantum state is, however, typically strongly dependent on the experimental platform chosen for implementation, and a general framework is still missing. Here we show that coined quantum walks on a line, which represent a framework general enough to encompass a variety of different platforms, can be used for quantum state engineering of arbitrary superposit… Show more

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Cited by 2 publications
(11 citation statements)
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“…This confirms that the adopted algorithm can reach performances compatible or even superior with respect to the one obtained with the direct method presented in Ref. 24 that consider ideal experimental platforms. In this sense, the algorithm can take into account and compensate for the experimental imperfections.…”
Section: Experimental Dynamical Learningsupporting
confidence: 79%
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“…This confirms that the adopted algorithm can reach performances compatible or even superior with respect to the one obtained with the direct method presented in Ref. 24 that consider ideal experimental platforms. In this sense, the algorithm can take into account and compensate for the experimental imperfections.…”
Section: Experimental Dynamical Learningsupporting
confidence: 79%
“…). Following the engineering protocol presented in, 11,24 we project the coin degree of freedom at the end of the evolution, so that our target state is some |φ target ∈ H W .…”
Section: Quantum State Engineering Process As a Black-box And Simulat...mentioning
confidence: 99%
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