Search Results - "Stanley, R.P."

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  1. 1

    A Symmetric Function Generalization of the Chromatic Polynomial of a Graph by Stanley, R.P.

    Published in Advances in mathematics (New York. 1965) (01-03-1995)
    “…For a finite graph G with d vertices we define a homogeneous symmetric function XG of degree d in the variables x1, x2, ... . If we set x1 = ... = xn= 1 and…”
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    Journal Article
  2. 2

    Far-field radiation pattern of red emitting thin-film resonant cavity LEDs by Joray, R., Ilegems, M., Stanley, R.P., Schmid, W., Butendeich, R., Wirth, R., Jaeger, A., Streubel, K.

    Published in IEEE photonics technology letters (01-05-2006)
    “…AlGaInP thin-film resonant cavity light-emitting diodes (RCLEDs) show an improved performance compared to standard red emitting RCLEDs. External quantum…”
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    Journal Article
  3. 3

    Theoretical Investigation of the Radiation Pattern From LEDs Incorporating Shallow Photonic Crystals by Wiesmann, C., Bergenek, K., Houdre, R., Stanley, R.P., Linder, N., Schwarz, U.T.

    Published in IEEE journal of quantum electronics (01-10-2009)
    “…A theoretical approach based on coupled-mode theory is presented in order to determine the radiation pattern of LEDs incorporating a shallow photonic crystal…”
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    Journal Article
  4. 4

    Toward ultrahigh-efficiency aluminum oxide microcavity light-emitting diodes: guided mode extraction by photonic crystals by Rattier, M., Benisty, H., Stanley, R.P., Carlin, J.-F., Houdre, R., Oesterle, U., Smith, C.J.M., Weisbuch, C., Krauss, T.F.

    “…In this paper, we present an improved version of microcavity light-emitting diodes, relying on the use of a low-index material, aluminum oxide. Our work…”
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    Journal Article
  5. 5

    Continuous-wave dual-wavelength lasing in a two-section vertical-cavity laser by Brunner, M., Gulden, K., Hovel, R., Moser, M., Carlin, J.F., Stanley, R.P., Ilegems, M.

    Published in IEEE photonics technology letters (01-10-2000)
    “…A vertical-cavity surface-emitting laser with two monolithically grown cavities is presented. The three-terminal device allows current injection into the…”
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    Journal Article
  6. 6

    Analytical calculation of the extraction efficiency of microcavity light-emitting diodes for display and fiber coupling applications by Royo, P., Stanley, R.P., Ilegems, A.

    “…This paper presents a simple analytical expression of the extraction efficiency for planar dielectric microcavity light-emitting diodes (MCLEDs) based on two…”
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    Journal Article
  7. 7

    On the enumeration of skew Young tableaux by Stanley, R.P.

    Published in Advances in applied mathematics (01-01-2003)
    “…For fixed n and a fixed partition α of k< n we give an explicit formula for the number N( n; α) of standard skew Young tableaux with n squares and shape λ/ α…”
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    Journal Article Conference Proceeding
  8. 8

    High-efficiency light-emitting diodes at /spl ap/1.3 /spl mu/m using InAs-InGaAs quantum dots by Fiore, A., Oesterle, U., Stanley, R.P., Ilegems, M.

    Published in IEEE photonics technology letters (01-12-2000)
    “…Light-emitting diodes (LEDs) based on long-wavelength, self-assembled InAs-InGaAs quantum dots (QDs) are demonstrated and characterized. The LEDs consist of a…”
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    Journal Article
  9. 9
  10. 10

    Structural and electrooptical characteristics of quantum dots emitting at 1.3 μm on gallium arsenide by FIORE, Andrea, OESTERLE, Ursula, CANTONI, Marco, BOBARD, Fabienne, STANLEY, Ross P, HOUDRE, Romuald, LELARGE, Francois, ILEGEMS, Marc, BORRI, Paola, LANGBEIN, Wolfgang, BIRKEDAL, D, HVAM, Jørn M

    Published in IEEE journal of quantum electronics (01-08-2001)
    “…We present a comprehensive study of the structural and emission properties of self-assembled InAs quantum dots emitting at 1.3 mu m. The dots are grown by…”
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    Journal Article
  11. 11

    Linear response and Rayleigh scattering of cavity-polaritons by Houdré, R., Stanley, R.P., Oesterle, U., Weisbuch, C.

    “…We report on the linear response of cavity-polariton states and elastic scattering effects. We discuss the effects of disorder and phonon scattering on…”
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  12. 12
  13. 13

    Structural and electrooptical characteristics of quantum dots emitting at 1.3 /spl mu/m on gallium arsenide by Fiore, A., Oesterle, U., Stanley, R.P., Houdre, R., Lelarge, F., Ilegems, M., Borri, P., Langbein, W., Birkedal, D., Hvam, J.M., Cantoni, M., Bobard, F.

    Published in IEEE journal of quantum electronics (01-08-2001)
    “…We present a comprehensive study of the structural and emission properties of self-assembled InAs quantum dots emitting at 1.3 /spl mu/m. The dots are grown by…”
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    Journal Article
  14. 14

    Linear and non-linear behavior of cavity polaritons by Houdré, R, Weisbuch, C, Stanley, R.P, Oesterle, U, Ilegems, M

    “…We report on the linear and non-linear emission of cavity-polaritons under resonant excitation. At low excitation density, in addition to polariton…”
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    Journal Article
  15. 15

    Collisional Broadening of Semiconductor Microcavity Polaritons by Dunbar, L.A., Lynch, M., Bradley, A.L., Donegan, J.F., Hegarty, J., Stanley, R.P., Oesterle, U., Houdré, R., Ilegems, M.

    Published in Physica status solidi. A, Applied research (01-04-2002)
    “…We measure the effect of intensity on the homogeneous linewidth of two high finesse semiconductor microcavities in the strong coupling regime using degenerate…”
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  16. 16

    Crossover from exciton to biexciton cavity polaritons by Saba, M., Quochi, F., Ciuti, C., Stanley, R.P., Houdre, R., Oesterle, U., Staehli, J.L., Deveaud, B., Bongiovanni, G., Mura, A.

    “…Summary form only given. We exploit a high-quality semiconductor microcavity for the creation of an exciton gas near the optical saturation density. The sample…”
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    Conference Proceeding Journal Article
  17. 17

    Photoquenching of excitonic inhomogeneous linewidth in semiconductor microcavities by Stanley, R.P., Houdré, R., Oesterle, U., Ilegems, M.

    Published in Solid state communications (01-05-1998)
    “…A semiconductor microcavity in the strong coupling regime shows two narrow lines (≤ 1 meV) in reflectivity, at low temperatures when the exciton and Fabry…”
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  18. 18

    Nonlinear reflectivity of strongly coupled exciton–photon systems under resonant and non-resonant pumping by Bradley, A.L., Doran, J.P., Hegarty, J., Stanley, R.P., Oesterle, U., Houdré, R., Ilegems, M.

    Published in Journal of luminescence (2000)
    “…Coupled exciton–photon systems are investigated using the pump–probe technique in order to gain a better understanding of the important mechanisms governing…”
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    Journal Article
  19. 19

    Photoluminescence efficiency of semiconductor-microcavity-polaritons far from resonance by Wainstain, J., Delalande, C., Voos, M., Bloch, J., Thierry-Mieg, V., Planel, R., Houdré, R., Stanley, R.P., Oesterle, U.

    Published in Solid state communications (01-06-1998)
    “…Temperature dependent photoluminescence experiments are performed in semiconductor microcavity structures exhibiting the strong coupling regime. Specific…”
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    Journal Article
  20. 20

    High-efficiency MEMS tuneable gratings for external cavity lasers and microspectrometers by Lockhart, R., Tormen, M., Niedermann, P., Overstolz, T., Hoogerwerf, A., Stanley, R.P.

    “…Optical characterization of a second generation MEMS tuneable blazed grating with a 1times1 mm active area has demonstrated high-efficiency wavelength…”
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    Conference Proceeding