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Title: Simulations of two-particle interactions with 2D quantum walks in time

We present the experimental implementation of a quantum walk on a two-dimensional lattice and show how to employ the optical system to simulate the quantum propagation of two interacting particles. Our quantum walk in time transfers the spatial spread of a quantum walk into the time domain, which guarantees a high stability and scalability of the setup. We present with our device quantum walks over 12 steps on a 2D lattice. By changing the properties of the driving quantum coin, we investigate different kinds of two-particle interactions and reveal their impact on the occurring quantum propagation.
Authors:
; ;  [1] ;  [2] ;  [3] ; ; ; ;  [4]
  1. University of Paderborn, Applied Physics, Warburger Str. 100, 33098 Paderborn, Germany and Max Planck Institute for the Science of Light, Günther-Scharowsky-str. 1 / Bau 24, 91058 Erlangen (Germany)
  2. Department of Physics, FNSPE, Czech Technical University in Prague, Břehová 7, 115 19 Praha, Czech Republic and Wigner Research Centre for Physics, Hungarian Academy of Sciences, H-1525 Budapest, P. O. Box 49 (Hungary)
  3. University of Paderborn, Applied Physics, Warburger Str. 100, 33098 Paderborn, Germany and Centre for Engineered Quantum Systems, Department of Physics and Astronomy, Macquarie University, Sydney NSW 2113 (Australia)
  4. Department of Physics, FNSPE, Czech Technical University in Prague, Břehová 7, 115 19 Praha (Czech Republic)
Publication Date:
OSTI Identifier:
22390690
Resource Type:
Journal Article
Resource Relation:
Journal Name: AIP Conference Proceedings; Journal Volume: 1633; Journal Issue: 1; Conference: 11. International Conference on Quantum Communication, Measurement and Computation, Vienna (Austria), 30 Jul - 3 Aug 2012; Other Information: (c) 2014 AIP Publishing LLC; Country of input: International Atomic Energy Agency (IAEA)
Country of Publication:
United States
Language:
English
Subject:
71 CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS; COMPUTERIZED SIMULATION; IMPLEMENTATION; OPTICAL SYSTEMS; PARTICLE INTERACTIONS; QUANTUM MECHANICS; QUANTUM STATES; STABILITY; TWO-DIMENSIONAL CALCULATIONS