Sophie (Sonia) Schirmer

Latest Papers

  1. Arbitrary high steady-state entanglement between non-interacting atoms via collective decay and adiabatic control. (arXiv:1005.2114v1 [quant-ph])
    Xiaoting Wang, Sophie G. Schirmer
  2. Global Control Methods for GHZ State Generation on 1-D Ising Chain. (arXiv:1004.2589v2 [quant-ph] UPDATED)
    Xiaoting Wang, Abolfazl Bayat, Sougato Bose, Sophie Schirmer
  3. Quantum Control Theory for State Transformations: Dark States and their Enlightenment. (arXiv:1003.4290v2 [quant-ph] UPDATED)
    Peter J. Pemberton-Ross, Alastair Kay, S.G. Schirmer
  4. Quantum System Identification: Hamiltonian Estimation using Spectral and Bayesian Analysis. (arXiv:0911.5429v1 [quant-ph])
    S. G. Schirmer, F. C. Langbein
  5. Robust Entanglement in Anti-ferromagnetic Heisenberg Chains by Single-spin Optimal Control. (arXiv:0911.5405v2 [quant-ph] UPDATED)
    Xiaoting Wang, Abolfazl Bayat, Sophie G Schirmer, Sougato Bose
  6. Stabilizing Quantum States by Constructive Design of Open Quantum Dynamics. (arXiv:0911.4156v2 [quant-ph] UPDATED)
    Francesco Ticozzi, Sophie G. Schirmer, Xiaoting Wang
  7. Quantum System Identification by Bayesian Analysis of Noisy Data: Beyond Hamiltonian Tomography. (arXiv:0911.1367v1 [quant-ph])
    S. G. Schirmer, D. K. L. Oi
  8. Stabilizing Open Quantum Systems by Markovian Reservoir Engineering. (arXiv:0909.1596v3 [quant-ph] UPDATED)
    S.G. Schirmer, Xiaoting Wang
  9. Implementation of Fault-tolerant Quantum Logic Gates via Optimal Control. (arXiv:0907.1635v2 [quant-ph] UPDATED)
    R. Nigmatullin, S. G. Schirmer
  10. Entanglement generation between distant atoms by Lyapunov control. (arXiv:0906.1830v1 [quant-ph])
    Xiaoting Wang, S. G. Schirmer
  11. Analysis of Effectiveness of Lyapunov Control for Non-generic Quantum States. (arXiv:0901.4522v2 [quant-ph] UPDATED)
    Xiaoting Wang, Sonia Schirmer
  12. Analysis of Lyapunov Method for Control of Quantum States. (arXiv:0901.4515v2 [quant-ph] UPDATED)
    Xiaoting Wang, Sonia Schirmer
  13. Implementation of Quantum Gates via Optimal Control. (arXiv:0805.2902v1 [quant-ph])
    Sonia Schirmer
  14. Improving quantum gate fidelities using optimized Euler angles. (arXiv:0805.2894v3 [quant-ph] UPDATED)
    K. Ch. Chatzisavvas, G. Chadzitaskos, C. Daskaloyannis, S. G. Schirmer
  15. Control Paradigms for Quantum Engineering. (arXiv:0805.2890v1 [quant-ph])
    Sonia Schirmer, Gajendran Kandasamy, Simon Devitt
  16. Analysis of Lyapunov Control for Hamiltonian Quantum Systems. (arXiv:0805.2882v1 [quant-ph])
    Xiaoting Wang, Sonia Schirmer
  17. Physics-based mathematical models for quantum devices via experimental system identification. (arXiv:0805.2725v1 [quant-ph])
    Sonia Schirmer, Daniel Oi, Simon Devitt
  18. Comparative Analysis of Control Strategies. (arXiv:0801.0746v1 [quant-ph])
    Sonia G Schirmer, Peter J Pemberton-Ross, Xiaoting Wang
  19. Global controllability with a single local actuator. (arXiv:0801.0721v2 [quant-ph] UPDATED)
    Sonia G. Schirmer, Ivan C. H. Pullen, Peter J. Pemberton-Ross
  20. Analysis of Lyapunov Method for Control of Quantum Systems. (arXiv:0801.0702v2 [quant-ph] UPDATED)
    Xiaoting Wang, Sonia G. Schirmer
  21. Subspace Confinement: How good is your qubit?. (arXiv:quant-ph/0702123v3 UPDATED)
    Simon J. Devitt, Sonia G. Schirmer, Daniel K.L. Oi, Jared H. Cole, Lloyd C.L. Hollenberg