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Integrated multimode interferometers with arbitrary designs for photonic boson sampling

Academic Article
Publication Date:
2013
abstract:
The evolution of bosons undergoing arbitrary linear unitary transformations quickly becomes hard to predict using classical computers as we increase the number of particles and modes. Photons propagating in a multiport interferometer naturally solve this so-called boson sampling problem(1), thereby motivating the development of technologies that enable precise control of multiphoton interference in large interferometers(2-4). Here, we use novel three-dimensional manufacturing techniques to achieve simultaneous control of all the parameters describing an arbitrary interferometer. We implement a small instance of the boson sampling problem by studying three-photon interference in a five-mode integrated interferometer, confirming the quantum-mechanical predictions. Scaled-up versions of this set-up are a promising way to demonstrate the computational advantage of quantum systems over classical computers. The possibility of implementing arbitrary linear-optical interferometers may also find applications in high-precision measurements and quantum communication(5).
Iris type:
01.01 Articolo in rivista
Keywords:
QUANTUM CIRCUITS; INTERFERENCE; QUBITS; CHIP
List of contributors:
Crespi, Andrea; Mataloni, Paolo; Osellame, Roberto; Ramponi, Roberta
Authors of the University:
OSELLAME ROBERTO
Handle:
https://iris.cnr.it/handle/20.500.14243/189712
Published in:
NATURE PHOTONICS (PRINT)
Journal
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