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Effectiveness of Geant4 in Monte Carlo Simulation Studyofphonon Conduction in Sn Host with Si Nanowire Interface


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[1] Butcher, H. Messel, Electron – Photon Shower Distribution, Nuclear Physics, 3, (1960) 15-1610.1016/0029-5582(60)90162-0Search in Google Scholar

[2] D. Brandt, Electron – Cryogenic Charge Transport on Crystals Using Geant4, Journal of Low Temperature Physics167(2011) 485 – 490Search in Google Scholar

[3] D. Singh,J.Y. Murthy, T.S. Fisher, Electron – Modelling of Subcontinuum Thermal Transport Across Semiconductor Gas Interfaces, Heat Transfer Summer Conference, 15,167(2008) 389-40010.1115/HT2008-56427Search in Google Scholar

[4] D. S. Akerib,Exclusion Limit on the WIMP – Nucleus Cross Section from Cryogenic Dark Matter,Physics Review, 72,(2005) 91 – 94Search in Google Scholar

[5] H. Messel, D.Crawford, Frequency Resolved Phonon Transport in Si/Ge Nanocomposites, Electron-Photon Shower Distribution, Pergamon Press(2011)Search in Google Scholar

[6] L. Beaulieu, Overview of Geant4 Applications in Medical Physics, Proceedings of IEEENSS, Portland(2003)Search in Google Scholar

[7] R. Ford, W. Nelson,Experience of Vectorizing Electromagnetic Models for Detector Simulation, Journal of Physics: Conference Series, 664(1985) 32 – 38Search in Google Scholar

[8] S. Agostinelli, A simulation toolkit, Nuclear Instruments and Methods in Accelerators, Spectrometers, Detectors and Associated Equipment, Physics Research, 3(2003) 250-303Search in Google Scholar

[9] S. Mazumder, A. Majumdar, Monte Carlo Study of Phonon Transport in Solid Thin Films Including Dispersion and Polarization, Journal of Heat Transfer, 123(2001) 749-75910.1115/1.1377018Search in Google Scholar

[10] S. Succi, The Lattice-Boltzmann Equation for Fluid Dynamics and Beyond, Clarendon Press, Oxford, UK (2001)Search in Google Scholar