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Prochains séminaires

Demain

  1. Gabriel Poulin-Lamarre
    • 12:30
    • D3-2040
    • To be announced

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lun, 05/27/2013 - 12:30

  1. Susanne Butz, Physikalisches Institut, Karlsruhe Institute of Technology, Karlsruhe, Germany.
    • 12:30
    • D3-2040
    • Title: A Tunable Josephson Metamaterial

      Abstract: We present experimental data on a tunable magnetic metamaterial consisting of rf-SQUIDs. A metamaterial is a medium constructed of artifical elements, so- called meta-atoms, that interact in a specific way with an incoming electromagnetic wave. The size of and the distance between the individual meta-atoms is much smaller than the wavelength. Our metamaterial consists of one-dimensional arrays of 27 rf-SQUIDs, one chain placed inside each of the gaps of a coplanar waveguide. Due to the nonlinear inductance of the rf-SQUID, its resonance frequency is tunable in situ by applying a dc magnetic field. We demonstrate that this results in tunable effective parameters of our metamaterial. In order to obtain the effective magnetic permeability from the measured data, we employ a technique that uses only the complex transmission coefficient S21.

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lun, 06/03/2013 - 12:30

  1. Bhaskar Roy Bardhan, Department of Physics and Astronomy, Louisiana State University
    • 12:30
    • D3-2040
    • To be annonced

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mer, 06/05/2013 - 10:45

  1. INTRIQ : Lilian Childress, McGill
    • 10:45
    • D1-2165
    • Title: Spins and photons: toward quantum networks in diamond

      Abstract: Long-lived electronic and nuclear spin states have made nitrogen-vacancy (NV) defects in diamond a leading candidate for solid-state quantum information processing. Moreover, their coherent optical transitions open opportunities for quantum communication. This talk will consider the motivation and requirements for optically-networked quantum devices, and explore challenges and opportunities for realizing them in diamond. In particular, the resonant excitation and emission in these defect centers enables single shot spin detection as well as observation of two-photon quantum interference; these two capabilities have enabled measurement-based entanglement between remote NV centers.

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lun, 06/10/2013 - 12:30

  1. Frank Verstraete , Université de Vienne
    • 12:30
    • D3-2040
    • To be announced

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Armitage NP, Fournier P, Greene RL. Progress and perspectives on electron-doped cuprates. Rev. Mod. Phys.. 2010;82:2421-87.
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Jenkins GS, Schmadel DC, Bach PL, Greene RL, Béchamp-Laganière X, Roberge G, et al. Origin of the anomalous Hall effect in the overdoped $n$ -type superconductor $ Pr2-{}x Cex Cuo4 $ : Current-vertex corrections due to antiferromagnetic fluctuations. Physical Review B. 2010;81:024508.
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Jenkins GS, Schmadel DC, Bach PL, Greene RL, Béchamp-Laganière X, Roberge G, et al. Terahertz magnetotransport measurements in underdoped Pr[sub 2 - x]Ce[sub x]CuO[sub 4] and comparison with angle-resolved photoemission. Physical Review B. 2009;79:224525.
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Homes CC, Lobo RP, Fournier P, Zimmers A, Greene RL. Optical determination of the superconducting energy gap in electron-doped Pr[sub 1.85]Ce[sub 0.15]CuO[sub 4]. Physical Review B. 2006;74:214515.
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Fournier P, Greene RL. Doping dependence of the upper critical field of electron-doped Pr2-xCexCuO4 thin films. Phys. Rev. B. 2003;68:094507.
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Koitzsch A, Blumberg G, Gozar A, Dennis BS, Fournier P, Greene RL. Emergence of low energy excitations in the vicinity of the (pi/2,pi/2) points in the pseudogap phase of Nd1.85Ce0.15CuO4. Phys. Rev. B. 2003;67:184522.
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Sonier JE, Poon KF, Luke GM, Kyriakou P, Miller RI, Liang R, et al. Superconductivity and Field-Induced Magnetism in Pr2-xCexCuO4 Single Crystals. Phys.\ Rev.\ Lett.. 2003;91:147002.
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Blumberg G, Koitzsch A, Gozar A, Dennis BS, Kendziora CA, Fournier P, et al. Nonmonotonic dx2-y2 Superconducting Order Parameter in Nd2-xCexCuO4. Phys.\ Rev.\ Lett.. 2002;88:107002.
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Homes CC, Li Q, Fournier P, Greene RL. Infrared optical properties of Pr2CuO4. Phys. Rev. B. 2002;66:144511.
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Balci H, Smolyaninova VN, Fournier P, Biswas A, Greene RL. Magnetic-field dependence of electronic specific heat in Pr1.85Ce0.15CuO4. Phys. Rev. B. 2002;66:174510.
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