Search Results - "Glattli, D.C"

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  1. 1

    Quantum tomography of an electron by Jullien, T., Roulleau, P., Roche, B., Cavanna, A., Jin, Y., Glattli, D. C.

    Published in Nature (London) (30-10-2014)
    “…Quantum tomography of individual electrons, which in principle yields complete knowledge of their quantum states, is demonstrated by initially preparing them…”
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    Journal Article
  2. 2

    On-Demand Coherent Single-Electron Source by Fève, G, Mahé, A, Berroir, J.-M, Kontos, T, Plaçais, B, Glattli, D.C, Cavanna, A, Etienne, B, Jin, Y

    “…We report on the electron analog of the single-photon gun. On-demand single-electron injection in a quantum conductor was obtained using a quantum dot…”
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  3. 3

    Violation of Kirchhoff's Laws for a Coherent RC Circuit by Gabelli, J, Fève, G, Berroir, J.-M, Plaçais, B, Cavanna, A, Etienne, B, Jin, Y, Glattli, D.C

    “…What is the complex impedance of a fully coherent quantum resistance-capacitance (RC) circuit at gigahertz frequencies in which a resistor and a capacitor are…”
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  4. 4

    Hanbury-Brown Twiss noise correlation with time controlled quasi-particles in ballistic quantum conductors by Glattli, D.C., Roulleau, P.

    “…We study the Hanbury Brown and Twiss correlation of electronic quasi-particles injected in a quantum conductor using current noise correlations and we…”
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  5. 5

    Minimal-excitation states for electron quantum optics using levitons by Dubois, J., Jullien, T., Portier, F., Roche, P., Cavanna, A., Jin, Y., Wegscheider, W., Roulleau, P., Glattli, D. C.

    Published in Nature (London) (31-10-2013)
    “…Minimal-excitation fermionic quasiparticles are created by applying a potential with Lorentzian time dependence to the contact of a narrow constriction in a…”
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  6. 6

    Harvesting dissipated energy with a mesoscopic ratchet by Roche, B., Roulleau, P., Jullien, T., Jompol, Y., Farrer, I., Ritchie, D.A., Glattli, D.C.

    Published in Nature communications (01-04-2015)
    “…The search for new efficient thermoelectric devices converting waste heat into electrical energy is of major importance. The physics of mesoscopic electronic…”
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  7. 7

    Reprint of : Hanbury-Brown Twiss noise correlation with time controlled quasi-particles in ballistic quantum conductors by Glattli, D.C., Roulleau, P.

    “…We study the Hanbury Brown and Twiss correlation of electronic quasi-particles injected in a quantum conductor using current noise correlations and we…”
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  8. 8

    Resonant edge magnetoplasmons and their decay in graphene by Kumada, N, Roulleau, P, Roche, B, Hashisaka, M, Hibino, H, Petković, I, Glattli, D C

    Published in Physical review letters (31-12-2014)
    “…We investigate resonant edge magnetoplasmons (EMPs) and their decay in graphene by high-frequency electronic measurements. From EMP resonances in disk shaped…”
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  9. 9

    Photon-Assisted Shot Noise in Graphene in the Terahertz Range by Parmentier, F D, Serkovic-Loli, L N, Roulleau, P, Glattli, D C

    Published in Physical review letters (03-06-2016)
    “…When subjected to electromagnetic radiation, the fluctuation of the electronic current across a quantum conductor increases. This additional noise, called…”
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  10. 10

    Enhanced shot noise in long quasi-diffusive S–N–S junctions by Roche, P., Perrin, H., Glattli, D.C., Takayanagi, H., Akazaki, T.

    Published in Physica. C, Superconductivity (01-04-2001)
    “…We present shot noise measurements on superconducting–normal–superconducting junction (S–N–S) where the superconductor is Niobium and the normal conductor is a…”
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  11. 11

    Shot noise and the Luttinger liquid-like properties of the FQHE by Glattli, D.C, Rodriguez, V, Perrin, H, Roche, P, Jin, Y, Etienne, B

    “…We present shot noise measurements in the Fractional Quantum Hall regime at ν= 1 3 . The two fractional edge channels which carry the current at the two…”
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  12. 12

    Hanbury-Brown Twiss noise correlation with time controlled quasi-particles in ballistic quantum conductors: HIGHLIGHTS : The robust antibunching of indistinguishable leviton charge pulses is demonstrated by Glattli, Christian D.C., Roulleau, P.

    “…We study the Hanbury Brown and Twiss correlation of electronic quasi-particles injected in a quantum conductor using current noise correlations and we…”
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  13. 13

    Single carbon nanotube transistor at GHz frequency by Chaste, J., Lechner, L., Morfin, P., Feve, G., Kontos, T., Berroir, J.M., Glattli, D.C., Happy, H., Hakonen, P., Placais, B.

    Published in Nano letters (30-01-2008)
    “…We report on microwave operation of top-gated single carbon nanotube transistors. From transmission measurements in the 0.1–1.6 GHz range we deduce device…”
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  14. 14

    Shot noise in carbon nanotube based Fabry-Perot interferometers by Herrmann, L.G., Delattre, T., Morfin, P., Berroir, J.-M., Plaçais, B., Glattli, D.C., Kontos, T.

    Published in Physical review letters (2007)
    “…We report on shot noise measurements in carbon nanotube based Fabry-Perot electronic interferometers. As a consequence of quantum interferences, the noise…”
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    Observation of the eV = h ν shot noise singularity in a quantum point contact by Zakka-Bajjani, E., Segala, J., Portier, F., Roche, P., Glattli, D.C., Cavanna, A., Jin, Y.

    “…We report on direct measurements of the electronic shot noise of a quantum point contact (QPC) at frequencies ν in the range 4–8 GHz. Both the thermal energy…”
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  17. 17

    Experimental test of the high-frequency quantum shot noise theory in a quantum point contact by Zakka-Bajjani, E, Ségala, J, Portier, F, Roche, P, Glattli, D C, Cavanna, A, Jin, Y

    Published in Physical review letters (07-12-2007)
    “…We report on direct measurements of the electronic shot noise of a quantum point contact at frequencies nu in the range 4-8 GHz. The very small energy scale…”
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  18. 18

    High visibility in an electronic Mach–Zehnder interferometer with random phase fluctuations by Roulleau, P., Portier, F., Glattli, D.C., Cavanna, A., Faini, G., Gennser, U., Mailly, D., Roche, P.

    “…We present an original method to measure the visibility of interferences in an electronic Mach–Zehnder interferometer in the presence of low frequency phase…”
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    Journal Article Conference Proceeding
  19. 19

    Realization of a time-controlled subnanosecond single electron source for ballistic qubits by Fève, G., Mahé, A., Berroir, J.-M., Kontos, T., Plaçais, B., Glattli, D.C., Cavanna, A., Etienne, B., Jin, Y.

    “…We report on the realization of a single electron source similar to single photon sources in optics providing an important brick for the implementation of…”
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    Journal Article Conference Proceeding
  20. 20

    Noisy Kondo impurities by Kontos, T, Delattre, T, Feuillet-Palma, C, Herrmann, L. G, Morfin, P, Berroir, J.-M, Fève, G, Plaçais, B, Glattli, D. C, Choi, M.-S, Mora, C

    Published in Nature physics (01-03-2009)
    “…In the original discussion of the Kondo effect, the increase of the resistance in an alloy such as Cu0.998Fe0.002 at low temperature was explained by the…”
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