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  1. INTRIQ : Andréa Morello, University of New South Wales, Australie
    • 10:45
    • D1-2165
    • Title : Single-atom spin qubits in silicon

      A phosphorus donor in silicon is, almost literally, the equivalent of a hydrogen atom in vacuum. It possesses electron and nuclear spins 1/2 which act as natural qubits [1], and the host material can be isotopically purified to be almost perfectly free of other spin species, ensuring extraordinary coherence times (~180 s) [2].
      I will present the current state-of-the-art in silicon quantum information technologies, a progress that started with the single-shot readout of the spin state of an electron bound to a single P atom [3]. This method was subsequently integrated with a broadband, on-chip microwave transmission line [4] to deliver coherent electromagnetic pulses and perform arbitrary rotations of the electron spin, thereby demonstrating the first single-atom spin qubit in silicon [5].
      The 31P nuclear spin can also be read out electrically - in single-shot and with fidelity > 99.8% - from a measurement of electron spin resonance, and coherently manipulated with radiofrequency pulses [6]. This yields a nuclear spin qubit in solid state with operation and readout fidelities comparable with those of ion trap systems.
      Finally, I will discuss current efforts to couple multiple donor qubits through the exchange interaction and perform entangling quantum logic gates. The ability to control the state of the 31P nuclear spin greatly simplifies the implementation of CNOT and SWAP gates, and allows for high-fidelity two-qubit operations without the requirement of atomic-precision in the donor locations.

      [1] B. Kane, Nature 393, 133 (1998)
      [2] M. Steger et al., Science 336, 1280 (2012)
      [3] A. Morello et al., Nature 467, 687 (2010)
      [4] J. Dehollain et al., Nanotechnology 24, 015202 (2013)
      [5] J. Pla et al., Nature 489, 541 (2012)
      [6] J. Pla et al., Nature 496, 334 (2013)

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Mon, 06/24/2013 - 12:30

  1. Congé férié / Public Holiday
    • 12:30
    • D3-2040
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Mon, 07/01/2013 - 12:30

  1. Congé férié / Public Holiday
    • 12:30
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Mon, 07/08/2013 - 12:30

  1. Samuel Boutin
    • 12:30
    • D3-2040
    • To be announced

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Mon, 07/15/2013 - 12:30

  1. Karl Thibault
    • 12:30
    • D3-2040
    • To be announced

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Fournier P, M.Aubin. Effect of Intergrain Ag on the Magnetic Properties of YBa2Cu3O7 analyzed using the Generalized Critical State Model. In: K.Tachikawa, K.Kitazawa, H.Maeda, T.Matsushita, editors. Critical State in Superconductors. World Scientific; 1995. p. 237-40.
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Fournier P, M.Aubin. The Critical State Model Parameters of Polycrystalline YBa2Cu3O7 : Critical Current in Thin Slabs and Field Penetration in Hollow Cylinders. Physica C. 1994;235-240:3079-80.
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M.Aubin, Fournier P. Interpretation of the Generalized Critical State Model Parameters from their Temperature Dependences and the Effect of Various Heat treatments in polycrystalline YBa2Cu3O7. Physica C. 1994;235-240:3081-2.
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Fournier P, M.Aubin, LeBlanc MA. Critical-State-Model parameters of polycrystalline YBa2Cu3O7 : Critical Current in Thin Slabs and Field Penetration in Hollow Cylinders. Physical Review B. 1994;50:9548-53.
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Fournier P, M.Aubin. Measuring the Critical Current of High Temperature Superconductors in Liquid Nitrogen as a Function of Temperature. Rev.Sci.Inst.. 1994;65:988.
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Fournier P, M.Oussena, M.Aubin. Determination of full penetration field of YBaCuO hollow cylinders by a low Ic YBaCuO superconducting probe : temperature dependence. Cryogenics. 1993;33:333.
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M.Aubin, H.Ghamlouch, Fournier P. Measurement of the Seebeck coefficient by an ac technique: Application to high-temperature superconductors. Rev.Sci.Inst.. 1993;64:2938.
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Fournier P, M.Aubin. The Wall Thickness Dependence of the Full Penetration Field of YBCO Polycristalline Hollow Cylinders and the Generalized Critical State Model. Physica B. 1993;194-196.
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Fournier P, R.Gagnon, M.Aubin. Variable-Range Hopping in YBa2(Cu1-xMx)3O7-y [M = Fe,Zn]. Physica C. 1991;177:159.
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P.Dufour, Jandl S, M.Banville, Fournier P, M.Aubin. Infrared reflectance of YBa2(Cu1-xFex)3O7-u. Physica C. 1991;166:431.
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