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Atomic and Laser Physics
Credit: Jack Hobhouse

Professor Andrew Daley

Professor of Quantum Physics

Research theme

  • Quantum information and computation
  • Quantum optics & ultra-cold matter

Sub department

  • Atomic and Laser Physics

Research groups

  • Theory of quantum systems
andrew.daley@physics.ox.ac.uk
Clarendon Laboratory, room 1st floor Townsend
  • About
  • Publications

Quantum Field Theory for the Three-Body Constrained Lattice Bose Gas -- Part I: Formal Developments

(2009)

Authors:

S Diehl, M Baranov, AJ Daley, P Zoller
More details from the publisher
Details from ArXiV

Quantum Field Theory for the Three-Body Constrained Lattice Bose Gas -- Part II: Application to the Many-Body Problem

(2009)

Authors:

S Diehl, M Baranov, AJ Daley, P Zoller
More details from the publisher
Details from ArXiV

Atomic Color Superfluid via Three-Body Loss

Physical Review Letters American Physical Society (APS) 103:24 (2009) 240401

Authors:

A Kantian, M Dalmonte, S Diehl, W Hofstetter, P Zoller, AJ Daley
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Observability of Quantum Criticality and a Continuous Supersolid in Atomic Gases

ArXiv 0910.1859 (2009)

Authors:

S Diehl, M Baranov, AJ Daley, P Zoller

Abstract:

We analyze the Bose-Hubbard model with a three-body hardcore constraint by mapping the system to a theory of two coupled bosonic degrees of freedom. We find striking features that could be observable in experiments, including a quantum Ising critical point on the transition from atomic to dimer superfluidity at unit filling, and a continuous supersolid phase for strongly bound dimers.
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Details from ArXiV

Observability of Quantum Criticality and a Continuous Supersolid in Atomic Gases

(2009)

Authors:

S Diehl, M Baranov, AJ Daley, P Zoller
More details from the publisher

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