Search Results - "Au Yeung, T. C"

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    A proposal for detecting spin-entangled electrons using the Berry phase by Zhao, Xuean, Au Yeung, T. C, Yu, Ya-Bin, Kam, C. H, Li, You-Quan

    Published in Europhysics letters (01-04-2008)
    “…We are motivated by a setup proposed by J. Carlos Egues et al. (Phys. Rev. Lett., 89 (2002) 176401) to investigate correlations of entangled electron pairs in…”
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    Thick acellular heart extracellular matrix with inherent vasculature: a potential platform for myocardial tissue regeneration by Sarig, Udi, Au-Yeung, Gigi C T, Wang, Yao, Bronshtein, Tomer, Dahan, Nitsan, Boey, Freddy Y C, Venkatraman, Subbu S, Machluf, Marcelle

    Published in Tissue engineering. Part A (01-10-2012)
    “…The decellularization of porcine heart tissue offers many opportunities for the production of physiologically relevant myocardial mimetic scaffolds. Earlier,…”
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    Atomistic Origin of the Thermally Driven Softening of Raman Optical Phonons in Group III Nitrides by Gu, M. X, Pan, L. K, Au Yeung, T. C, Tay, B. K, Sun, Chang Q

    Published in Journal of physical chemistry. C (13-09-2007)
    “…It has long been puzzling regarding the physical origin of the thermally induced red-shift of Raman optical phonons in group III nitride crystals despite some…”
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    Frequency dependent capacitance and plasmon excitations in a coherent parallel-plate capacitor by Quan, Jun, Yu, Yabin, Au Yeung, T. C.

    Published in Applied physics letters (20-04-2009)
    “…We report the theoretical investigations of frequency-dependent capacitance in a coherent parallel-plate capacitor. It is found that the capacitance strongly…”
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    General analytical Poisson solution for undoped generic two-gated metal-oxide-semiconductor field-effect transistors by Shangguan, W. Z., Au Yeung, T. C., Zhu, Z. M., Zhou, X.

    Published in Applied physics letters (01-01-2007)
    “…We present a general analytical solution to the Poisson equation for undoped semi-conductors. This general Poisson solution is then applied to generic…”
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    The Effect of the Disorder on the Longitudinal Resistance of a Graphene p-n Junction in Quantum Hall Regime by Chen, Jiang-chai, Yeung, T. C. Au, Sun, Qing-feng

    Published 14-12-2010
    “…Phys. Rev. B 81, 245417 (2010) The longitudinal resistances of a six-terminal graphene p-n junction under a perpendicular magnetic field are investigated…”
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    Bound state energy calculations of magnetopolarons in strongly confined parabolic quantum wires by Au-Yeung, T.C., Kam, C.H., Menon, R., Shi, Z.F.

    Published in Physics letters. A (21-12-1998)
    “…Based on an earlier proposed variational perturbative method, we use a combination of Landau wavefunctions and the one-dimensional hydrogen wavefunctions to…”
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    Energy levels of impurity magnetopolarons in parabolic quantum wires by Au-Yeung, T.C., Kam, C.H., Shi, Z.F., Rajesh, M., Straughan, R.A.

    Published in Physics letters. A (26-01-1998)
    “…A variational perturbative method is established to calculate the energy levels of impurity magnetopolarons in parabolic quantum wires for arbitrary values of…”
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    General analytical Poisson solution for undoped generic two-gatedmetal-oxide-semiconductor field-effect transistors by Shangguan, W. Z., Au Yeung, T. C., Zhu, Z. M., Zhou, X.

    Published in Applied physics letters (03-01-2007)
    “…We present a general analytical solution to the Poisson equation for undoped semi-conductors. This general Poisson solution is then applied to generic…”
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    Journal Article
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    Polariton gap in a superconductor–dielectric superlattice by Ooi, C.H.Raymond, Yeung, T.C.Au

    Published in Physics letters. A (1999)
    “…Photonic band structures explored in the past 12 years were mainly fabricated from dielectric materials, typically used in the semiconductor technology…”
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    A variational perturbative approach to the impurity magnetopolarons in parabolic quantum wires by AU-YEUNG, T. C, SHI, Z. F, KAM, C. H, MENON, R, STRAUGHAN, R. A

    “…We use a variational perturbative method for the calculation of the energy levels of impurity magnetopolarons in parabolic quantum wires. The method is…”
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