Partially coherent electron transport in terahertz quantum cascade lasers based on a Markovian master equation for the density matrix

Olafur Jonasson1, Farhad Karimi1, I. Knežević1
1University of Wisconsin-Madison, Madison, USA

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Faist, J., et al.: Quantum cascade laser. Science 264, 553 (1994)

Dupont, E., Fathololoumi, S., Liu, H.: Simplified density-matrix model applied to three-well terahertz quantum cascade lasers. Phys. Rev. B 81, 205311 (2010)

Jirauschek, C., Kubis, T.: Modeling techniques for quantum cascade lasers. Appl. Phys. Rev. 1, 1, 011307 (2014)

Iotti, R., Rossi, F.: Nature of charge transport in quantum-cascade lasers. Phys. Rev. Lett. 87, 146603 (2001)

Callebaut, H., et al.: Importance of electron-impurity scattering for electron transport in terahertz quantum-cascade lasers. Appl. Phys. Lett. 84, 5, 645 (2004)

Gao, X., Botez, D., Knezevic, I.: X-valley leakage in gaas-based midinfrared quantum cascade lasers: a monte carlo study. J. Appl. Phys. 101, 6, 063101 (2007)

Shi, Y.B., Knezevic, I.: Nonequilibrium phonon effects in midinfrared quantum cascade lasers. J. Appl. Phys. 116, 12, 123105 (2014)

Willenberg, H., Döhler, G.H., Faist, J.: Intersubband gain in a bloch oscillator and quantum cascade laser. Phys. Rev. B 67, 085315 (2003)

Kumar, S., Hu, Q.: Coherence of resonant-tunneling transport in terahertz quantum-cascade lasers. Phys. Rev. B 80, 245316 (2009)

Weber, C., Wacker, A., Knorr, A.: Density-matrix theory of the optical dynamics and transport in quantum cascade structures: the role of coherence. Phys. Rev. B 79, 165322 (2009)

Terazzi, R., Faist, J.: A density matrix model of transport and radiation in quantum cascade lasers. N. J. Phys. 12, 3, 033045 (2010)

Lee, S.-C., Wacker, A.: Nonequilibrium green’s function theory for transport and gain properties of quantum cascade structures. Phys. Rev. B 66, 245314 (2002)

Callebaut, H., Hu, Q.: Importance of coherence for electron transport in terahertz quantum cascade lasers. J. Appl. Phys. 98, 10, 104505 (2005)

Dupont, E., et al.: A phonon scattering assisted injection and extraction based terahertz quantum cascade laser. J. Appl. Phys. 111, 7, 073111 (2012)

Lindskog, M., et al.: Comparative analysis of quantum cascade laser modeling based on density matrices and non-equilibrium green’s functions. Appl. Phys. Lett. 105, 10, 103106 (2014)

Harrison, P., Indjin, D.: Electron temperature and mechanisms of hot carrier generation in quantum cascade lasers. J. Appl. Phys. 92, 11, 6921 (2002)

Frohlich, H.: Theory of electrical breakdown in ionic crystals. Proc. R. Soc. Lond. A 160, 220 (1937)

Breuer, H.P., Petruccione, F.: The Theory of Open Quantum Systems. Oxford University Press, Oxford (2002)

Knezevic, I., Novakovic, B.: Time-dependent transport in open systems based on quantum master equations. J. Comput. Electron. 12, 3, 363 (2013)

Kohn, W., Luttinger, J.M.: Quantum theory of electrical transport phenomena. Phys. Rev. 108, 590 (1957)

Fischetti, M.V.: Master-equation approach to the study of electronic transport in small semiconductor devices. Phys. Rev. B 59, 4901 (1999)

Karimi, F., Davoody, A.H., Knezevic, I.: Dielectric function and plasmons in graphene: a self-consistent-field calculation within a Markovian master equation formalism. Phys. Rev. B 93, 205421 (2016)

Mutze, U.: An asynchronous leapfrog method ii (2013) (Unpublished). arXiv:1311.6602

Wacker, A.: Semiconductor superlattices: a model system for nonlinear transport. Phys. Rep. 357, 1, 1 (2002). (ISSN 0370-1573)

Moiseyev, N.: Quantum theory of resonances: calculating energies, widths and cross-sections by complex scaling. Phys. Rep. 302, 5-6, 212 (1998). (ISSN 0370-1573)

Ferry, D.K.: Semiconductors. IOP Publishing, Bristol (2013). (ISBN 978-0-750-31044-4)

Jacoboni, C., Lugli, P.: The Monte Carlo Method for Semiconductor Device Simulation. Springer, Vienna (1989)

Iotti, R., Ciancio, E., Rossi, F.: Quantum transport theory for semiconductor nanostructures: a density-matrix formulation. Phys. Rev. B 72, 125347 (2005)