Nonlocal transfer of high-dimensional unitary operations
Dilip Paneru, Francesco Di Colandrea, Alessio D'Errico, Ebrahim Karimi

TL;DR
This paper introduces a novel technique leveraging spatial correlations in biphoton states to nonlocally access the results of arbitrary high-dimensional unitary operations, enabling resource-efficient quantum information processing.
Contribution
The work presents a method for nonlocal access to high-dimensional unitary operations using spatial correlations, validated experimentally, facilitating distributed quantum computations.
Findings
Successfully implemented nonlocal access to unitary operations in 1D and 2D spaces.
Demonstrated potential for resource-efficient quantum network operations.
Validated technique with experimental results on spatially periodic unitaries.
Abstract
Highly correlated biphoton states are powerful resources in quantum optics, both for fundamental tests of the theory and practical applications. In particular, high-dimensional spatial correlation has been used in several quantum information processing and sensing tasks, for instance, in ghost imaging experiments along with several quantum key distribution protocols. Here, we introduce a technique that exploits spatial correlations, whereby one can nonlocally access the result of an arbitrary unitary operator on an arbitrary input state without the need to perform any operation themselves. The method is experimentally validated on a set of spatially periodic unitary operations in one-dimensional and two-dimensional spaces. Our findings pave the way for efficiently distributing quantum simulations and computations in future instances of quantum networks where users with limited resources…
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Taxonomy
TopicsDifferential Equations and Boundary Problems · Heat Transfer and Mathematical Modeling · Matrix Theory and Algorithms
