Quantum Technology Laboratory »,  
Physics,   University of Queensland »,  
Brisbane, Queensland 4072, Australia  

Refereed | Virtual | Book Chapters | Other | Patents | Press & Media | Talks | Theses

2010

  1. Information complementarity in quantum physics,
    A. Fedrizzi, B. Škerlak, T. Paterek, M. P. de Almeida, and A. G. White,
    arXiv:1002.2451 (2010).
  2. Matchgate quantum computing,
    S. Ramelow, A. Fedrizzi, A. M. Steinberg, and A. G. White,
    arXiv:0909.3016 (2009).
  3. Violation of the Leggett-Garg inequality with weak measurements of photons,
    M. E. Goggin, M. P. Almeida, M. Barbieri, B. P. Lanyon, J. L. O'Brien, A. G. White, and G. J. Pryde,
    arXiv:0907.1679 (2009).
  4. Discrete single-photon quantum walks with tunable decoherence,
    M. A. Broome, A. Fedrizzi, B. P. Lanyon, I. Kassal, A. Aspuru-Guzik, and A. G. White,
    Physical Review Letters 104, 153602 (2010).
    doi:10.1103/PhysRevLett.104.153602.
  1. Experimental feedback control of quantum systems using weak measurements,
    G. G. Gillett, R. B. Dalton , B. P. Lanyon, M. P. Almeida, M. Barbieri, G. J. Pryde, J. L. O'Brien, K. J. Resch, S. D. Bartlett and A. G. White
    Physical Review Letters 104, 080503 (2010).
    doi:10.1103/PhysRevLett.104.080503.
  2. Towards Quantum Chemistry on a Quantum Computer,
    B. P. Lanyon, J. D. Whitfield, G. G. Gillet, M. E. Goggin, M. P. Almeida, I. Kassal, J. D. Biamonte, M. Mohseni, B. J. Powell, M. Barbieri, A. Aspuru-Guzik and A. G. White,
    Nature Chemistry 2, 106 (2010).
    doi:10.1038/nchem.483

2009

  1. Anti-symmetrisation reveals hidden entanglement,
    Alessandro Fedrizzi, Thomas Herbst, Markus Aspelmeyer, Marco Barbieri, Thomas Jennewein and Anton Zeilinger,
    New Journal of Physics 11, 103052 (2009).
  2. Complementarity in variable strength quantum non-demolition measurements,
    M. Barbieri, M. E. Goggin, M. P. Almeida, B. P. Lanyon and A. G. White,
    New Journal of Physics 11, 093012 (2009).
    doi:10.1088/1367-2630/11/9/093012
  3. Parametric downconversion and optical quantum gates: two's company, four's a crowd,
    M. Barbieri, T. J. Weinhold, B. P. Lanyon, A. Gilchrist, K. J. Resch, M. P. Almeida and A. G. White,
    Journal of Modern Optics 56, 209 (2009).
    doi:10.1080/09500340802337374
  1. Experimentally generating and tuning robust entanglement between photonic qubits ,
    B. P. Lanyon and N. K. Langford,
    New Journal of Physics 11, 013008 (2009).
    doi:10.1088/1367-2630/11/1/013008.
  2. Quantum computing using shortcuts through higher dimensions,
    B. P. Lanyon, M. Barbieri, M. P. Almeida, T. Jennewein, T. C. Ralph, K. J. Resch, G. J. Pryde, J. L. O'Brien, A. Gilchrist and A. G. White,
    Nature Physics 5, 134 (2009). doi:10.1038/nphys1150.

2008

  1. Understanding photonic quantum-logic gates: The road to fault tolerance,
    T. J. Weinhold, A. Gilchrist, K. J. Resch, A. C. Doherty, J. L. O'Brien, G. J. Pryde, and A. G. White,
    arXiv 0808.0794 (2008).
  2. Experimental quantum computing without entanglement,
    B. P. Lanyon, M. Barbieri, M. P. Almeida, and A. G. White
    Physical Review Letters 101, 200501 (2008).
    doi:10.1103/PhysRevLett.101.200501.
  1. The secret world of shrimps: polarisation vision at its best,
    S. Kleinlogel and A. G. White,
    PLoS ONE 3, e2190 (2008).
    doi:10.1371/journal.pone.0002190.
  2. Manipulating biphotonic qutrits,
    B. P. Lanyon, T. J. Weinhold, N. K. Langford, J. L. O'Brien, K. J. Resch, A. Gilchrist, and A. G. White,
    Physical Review Letters 100, 060504 (2008).
    doi:10.1103/PhysRevLett.100.060504.

2007

  1. Experimental demonstration of Shor's algorithm with quantum entanglement ,
    B. P. Lanyon, T. J. Weinhold, N. K. Langford, M. Barbieri, D. F. V. James, A. Gilchrist, and A. G. White,
    Physical Review Letters 99, 250505 (2007).
    doi:10.1103/PhysRevLett.99.250505.
  2. Effects of frequency correlation in linear optical entangling gate operated with independent photons,
    M. Barbieri,
    Physical Review A 76, 043825 (2007).
    doi:10.1103/PhysRevA.76.043825.
  3. Time-reversal and super-resolving phase measurements,
    K. J. Resch, K. L. Pregnell, R. Prevedel, A. Gilchrist, G. J. Pryde, J. L. O'Brien, and A. G. White, Physical Review Letters 98, 223601 (2007).
    doi:10.1103/PhysRevLett.98.223601.
  1. Entanglement generation by Fock- state filtration,
    K. J. Resch, J. L. O'Brien, T. J. Weinhold, K. Sanaka, B. P. Lanyon, and N. K. Langford, and A. G. White,
    Physical Review Letters 98, 203602 (2007).
    doi:10.1103/PhysRevLett.98.203602.
  2. Measuring two-qubit gates,
    A. G. White, A. Gilchrist, G. J. Pryde, J. L. O'Brien, M. J. Bremner, and N. K. Langford,
    Journal of the Optical Society of America B 24, 172-183 (2007).
    doi:10.1364/JOSAB.24.000172.
  3. Source of triggered entangled photon pairs?,
    A. Gilchrist, K. J. Resch, and A. G. White,
    Nature 445, E4 (2007).
    doi:10.1038/nature05546.

2006

  1. Study of optical properties of electropolymerised melanin films by photopyroelectric spectroscopy,
    J. E. de Albuquerque, C. Giacomantonio, A. G. White, and P. Meredith,
    European Biophysics Journal with Biophysics Letters 35, 190-195 (2006).
    doi:10.1007/s00249-005-0020-z.
  1. Quantum Nondemolition Measurements on Qubits,
    T. C. Ralph, S. D. Bartlett, J. L. O'Brien, G. J. Pryde, H. M. Wiseman,
    Physical Review A 73, 012113 (2006).

2005

  1. Demonstration of a simple entangling optical gate and its use in Bell-state analysis,
    N. K. Langford, T. J. Weinhold, R. Prevedel, A. Gilchrist, J. L. O'Brien, G. J. Pryde, and A. G. White,
    Physical Review Letters 95, 210504 (2005).
    doi:10.1103/PhysRevLett.95.210504.
  2. Quantum-gate characterization in an extended Hilbert space,
    P. P. Rohde, G. J. Pryde, J. L. O'Brien, T. C. Ralph,
    Physical Review A 72, 032306 (2005).
  3. Determination of thermal and optical parameters of melanins by photopyroelectric spectroscopy,
    J. E. de Albuquerque, C. Giacomantonio, A. G. White, and P. Meredith,
    Applied Physics Letters 87, 061920 (2005).
    doi:10.1063/1.2009833.
  4. Measuring a photonic qubit without destroying it - Response,
    G. J. Pryde, J. L. O'Brien, A. G. White, S. D. Bartlett, and T. C. Ralph,
    Physical Review Letters 95, 048902 (2005).
    doi:10.1103/PhysRevLett.95.048902.
  1. Demonstrating Superior Discrimination of Locally Prepared States Using Nonlocal Measurements,
    G. J. Pryde, J. L. O'Brien, A. G. White, and S. D. Bartlett,
    Physical Review Letters 94, 220406 (2005).
    doi:10.1103/PhysRevLett.94.220406.
  2. Measurement of Quantum Weak Values of Photon Polarisation,
    G. J. Pryde, J. L. O'Brien, A. G. White, T. C. Ralph, and H. M. Wiseman,
    Physical Review Letters 94, 220405 (2005).
    doi:10.1103/PhysRevLett.94.220405.
  3. High-fidelity Z-measurement error encoding of optical qubits,
    J. L. O'Brien, G. J. Pryde, A. G. White, and T. C. Ralph,
    Physical Review A 71, 060303(R) (2005).
    doi:10.1103/PhysRevA.71.060303.

2004

  1. Laser frequency locking by direct measurement of detuning,
    A. Ratnapala, C. J. Vale, A. G. White, M. D. Harvey, N. R. Heckenberg, and H. Rubinsztein-Dunlop,
    Optics Letters 29, 2704 (2004).
  2. Quantum process tomography of a controlled-NOT gate,
    J. L. O'Brien, G. J. Pryde, A. Gilchrist, D. F. V. James, N. K. Langford, T. C. Ralph, and A. G. White,
    Physical Review Letters 93, 080502 (2004).
  1. Measuring entangled qutrits and their use for quantum bit commitment,
    N. K. Langford, R. B. Dalton, M. D. Harvey, J. L. O'Brien, G. J. Pryde, A. Gilchrist, S. D. Bartlett, and A. G. White,
    Physical Review Letters 93, 053601 (2004).
  2. Measuring a photonic qubit without destroying it,
    G. J. Pryde, J. L. O'Brien, A. G. White, S. D. Bartlett, and T. C. Ralph,
    Physical Review Letters 92, 190402 (2004).

2003

  1. Creation of maximally entangled photon number states using optical fibre multiports ,
    G. J. Pryde and A. G. White,
    Physical Review A, 68, 052315 (2003).
  2. Demonstration of an all-optical quantum controlled-NOT gate,
    J. L. O'Brien, G. J. Pryde, A. G. White, T. C. Ralph, and D. Branning,
    Nature 426, 264 (2003).
    Click here for press and media accounts of this paper.
  3. Quantum theory of the far-off-resonance cw Raman laser: Heisenberg / Langevin approach ,
    P. A. Roos, S. K. Murphy, L. S. Meng, J. L. Carlsten, T. C. Ralph, A. G. White and J. K. Brasseur,
    Physical Review A 68, 013802 (2003).
  1. Frequency locking by analysis of orthogonal modes,
    M. D. Harvey and A. G. White,
    Optics Communication 221, 163 (2003).
  2. Ancilla-assisted quantum process tomography,
    J. B. Altepeter, D. Branning, E. Jeffrey, T. C. Wei, P. G. Kwiat, R. T. Thew, J. L. O'Brien, M. A. Nielsen, and A. G. White,
    Physical Review Letters 90 193601 (2003).
  3. Input states for quantum gates,
    A. Gilchrist, W. J. Munro, and A. G. White,
    Physical Review A 67, 040304(R) (2003).

2002

  1. Entanglement creation using quantum interrogation,
    A. Gilchrist, A. G. White and W. J. Munro,
    Physical Review A 66, 012106 (2002).
  2. Qudit quantum-state tomography,
    R. T. Thew, K. Nemoto, A. G. White, and W. J. Munro,
    Physical Review A 66, 012303 (2002).
  1. Linear optical controlled-NOT gate in the coincidence basis,
    T. C. Ralph, N. K. Langford, T. B. Bell, and A. G. White,
    Physical Review A 65, 062324 (2002).

2001

  1. A Raman approach to quantum logic in Calcium-like ions,
    M. S. Gulley, A. G. White, and D. F. V. James,
    arXiv:quant-ph/0112117 (2001).
  2. Efficient linear optics quantum computation,
    G. J. Milburn, T. C. Ralph, A. G. White, E. Knill, and R. Laflamme,
    Quantum Information and Computation 1, 13 (2001).
  3. Exploring Hilbert space: Accurate characterisation of quantum information,
    A. G. White, D. F. V. James, W. J. Munro, and P. G. Kwiat,
    Physical Review A 65, 012301 (2001).
  4. Simple Scheme for Efficient Linear Optics Quantum Gates,
    T. C. Ralph, A. G. White, and G. J. Milburn,
    Physical Review A 65, 012314 (2001).
  5. Transforming chaos to periodic oscillations,
    G. Kociuba, N. R. Heckenberg, A. G. White,
    Physical Review E 64, 056220 (2001).
  1. Measurement of qubits,
    D. F. V. James, P. G. Kwiat, W. J. Munro, and A. G. White,
    Physical Review A 64, 052312 (2001).
  2. Maximizing the entanglement of two mixed qubits,
    W. J. Munro, D. F. V. James, A. G. White, and P. G. Kwiat,
    Physical Review A 64, 030302 (R) (2001).
  3. The Bell inequality: a measure of entanglement?,
    W. J. Munro, K. Nemoto, and A. G. White,
    Journal of Modern Optics 48, 1239-1246 (2001).

2000

  1. Kerr noise reduction and squeezing,
    A. G. White, P. K. Lam, D. E. McClelland, H.-A. Bachor, and W. J. Munro,
    Journal of Optics B: Quantum and Semiclassical Optics 2, 553-561 (2000).
  2. Experimental verification of decoherence-free subspaces,
    P. G. Kwiat, A. J. Berglund, J. B. Altepeter, and A. G. White,
    Science 290, 498-501 (2000).
  3. Observation of Power-Law Scaling for Phase Transitions in Linear Trapped Ion Crystals,
    D. G. Enzer, M. M. Schauer, J. J. Gomez, M. S. Gulley, M. H. Holzscheiter, P. G. Kwiat, S. K. Lamoreaux, C. G. Peterson, V. D. Sandberg, D. Tupa, A. G. White, R. J. Hughes, and D. F. V. James,
    Physical Review Letters 85, 2466-2470 (2000).
  1. Entangled state quantum cryptography: Eavesdropping on the Ekert protocol,
    D. S. Naik, C. G. Peterson, A. G. White, A. J. Berglund, and P. G. Kwiat,
    Physical Review Letters 84, 4733-4736 (2000).
  2. Grover's search algorithm: An optical approach,
    P. G. Kwiat, J. R. Mitchell, P. D. D. Schwindt, and A. G. White,
    Journal of Modern Optics 47, 257-266 (2000).

1999

  1. High-efficiency quantum interrogation measurements via the quantum Zeno effect,
    P. G. Kwiat, A. G. White, J. R. Mitchell, O. Nairz, G. Weihs, H. Weinfurter, and A. Zeilinger,
    Physical Review Letters 83, 4725-4728 (1999).
  2. Non-maximally entangled states: production, characterisation and utilisation,
    A. G. White, D. F. V. James, P. H. Eberhard and P. G. Kwiat,
    Physical Review Letters 83, 3103-3106 (1999).
  1. Ultra-bright source of polarisation-entangled photons,
    P. G. Kwiat, E. Waks, A. G. White, I. Appelbaum, and P. H. Eberhard,
    Physical Review A 60, R773-R776 (1999).