P. Vigneron, S. Pirotta, I. Carusotto, N. Tran, G. Biasiol et al., Quantum well infrared photo-detectors operating in the strong light-matter coupling regime, Applied Physics Letters, vol.114, issue.13, p.131104, 2019.
URL : https://hal.archives-ouvertes.fr/hal-02364795

S. Tomi?, T. Sogabe, and Y. Okada, In-plane coupling effect on absorption coefficients of InAs/GaAs quantum dots arrays for intermediate band solar cell, Progress in Photovoltaics: Research and Applications, vol.23, issue.5, pp.546-558, 2014.

B. F. Levine, A. Zussman, S. D. Gunapala, M. T. Asom, J. M. Kuo et al., Photoexcited escape probability, optical gain, and noise in quantum well infrared photodetectors, Journal of Applied Physics, vol.72, issue.9, pp.4429-4443, 1992.

N. Cavassilas, D. Suchet, A. Delamarre, F. Michelini, M. Bescond et al., Beneficial impact of a thin tunnel barrier in quantum well intermediate-band solar cell, EPJ Photovoltaics, vol.9, p.11, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02331941

N. Cavassilas, F. Michelini, and M. Bescond, Modeling of nanoscale solar cells: The Green's function formalism, Journal of Renewable and Sustainable Energy, vol.6, issue.1, p.011203, 2014.

N. Cavassilas, F. Michelini, and M. Bescond, On the local approximation of the electron?photon interaction self-energy, Journal of Computational Electronics, vol.15, issue.4, pp.1233-1239, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01434948

U. Aeberhard and U. Rau, Microscopic Perspective on Photovoltaic Reciprocity in Ultrathin Solar Cells, Physical Review Letters, vol.118, issue.24, p.247702, 2017.

A. Berbezier and U. Aeberhard, Impact of Nanostructure Configuration on the Photovoltaic Performance of Quantum-Dot Arrays, Physical Review Applied, vol.4, issue.4, 2015.

M. Luisier, A. Szabo, C. Stieger, C. Klinkert, S. Bruck et al., First-principles simulations of 2-D semiconductor devices: Mobility, I-V characteristics, and contact resistance, 2016 IEEE International Electron Devices Meeting (IEDM), 2016.

K. Nehari, M. Lannoo, F. Michelini, N. Cavassilas, M. Bescond et al., Improved effective mass theory for silicon nanostructures, Applied Physics Letters, vol.93, issue.9, p.092103, 2008.

C. Medina-bailon, T. Sadi, M. Nedjalkov, H. Carrillo-nunez, J. Lee et al., Mobility of Circular and Elliptical Si Nanowire Transistors Using a Multi-Subband 1D Formalism, IEEE Electron Device Letters, vol.40, issue.10, pp.1571-1574, 2019.

L. Liu, R. Liang, J. Wang, and J. Xu, Enhanced carrier mobility and direct tunneling probability of biaxially strained Ge1?xSnx alloys for field-effect transistors applications, Journal of Applied Physics, vol.117, issue.18, p.184501, 2015.

A. Yangui, M. Bescond, T. Yan, N. Nagai, and K. Hirakawa, Evaporative electron cooling in asymmetric double barrier semiconductor heterostructures, Nature Communications, vol.10, issue.1, 2019.
URL : https://hal.archives-ouvertes.fr/hal-02331913

W. Shockley and H. J. Queisser, Detailed Balance Limit of Efficiency of p?n Junction Solar Cells, Journal of Applied Physics, vol.32, issue.3, pp.510-519, 1961.

A. Luque, A. Martí, and C. Stanley, Understanding intermediate-band solar cells, Nature Photonics, vol.6, issue.3, pp.146-152, 2012.

A. Luque and A. Martí, Increasing the Efficiency of Ideal Solar Cells by Photon Induced Transitions at Intermediate Levels, Physical Review Letters, vol.78, issue.26, pp.5014-5017, 1997.

N. López, K. M. Yu, T. Tanaka, and W. Walukiewicz, Multicolor Electroluminescence from Intermediate Band Solar Cell Structures, Advanced Energy Materials, vol.6, issue.5, p.1501820, 2015.

T. Sogabe, Y. Shoji, M. Ohba, K. Yoshida, R. Tamaki et al., Intermediate-band dynamics of quantum dots solar cell in concentrator photovoltaic modules, Scientific Reports, vol.4, issue.1, 2014.

Y. Okada, N. J. Ekins-daukes, T. Kita, R. Tamaki, M. Yoshida et al., Intermediate band solar cells: Recent progress and future directions, Applied Physics Reviews, vol.2, issue.2, p.021302, 2015.

D. J. Phillips, K. Farrell, and . Yoshida, Applied Physics Reviews, vol.2, p.21302, 2015.

A. Pusch and N. J. Ekins-daukes, Voltage Matching, Étendue, and Ratchet Steps in Advanced-Concept Solar Cells, Physical Review Applied, vol.12, issue.4, 2019.

A. Pusch, M. Yoshida, N. P. Hylton, A. Mellor, C. C. Phillips et al., Ekins-Daukes, Progress in Photovoltaics: Research and Applications, vol.24, 2016.

A. Delamarre, D. Suchet, N. Cavassilas, Y. Okada, M. Sugiyama et al., An Electronic Ratchet Is Required in Nanostructured Intermediate-Band Solar Cells, IEEE Journal of Photovoltaics, vol.8, issue.6, pp.1553-1559, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01972812

,

D. Suchet, A. Delamarre, N. Cavassilas, Z. Jehl, Y. Okada et al., Analytical optimization of intermediate band systems: Achieving the best of two worlds, Progress in Photovoltaics: Research and Applications, vol.26, issue.10, pp.800-807, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01972817

A. Delamarre, D. Suchet, N. Cavassilas, Y. Okada, M. Sugiyama et al., An Electronic Ratchet Is Required in Nanostructured Intermediate-Band Solar Cells, IEEE Journal of Photovoltaics, vol.8, issue.6, pp.1553-1559, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01972812

R. Clerc, A. Spinelli, G. Ghibaudo, and G. Pananakakis, Theory of direct tunneling current in metal?oxide?semiconductor structures, Journal of Applied Physics, vol.91, issue.3, pp.1400-1409, 2002.

A. Pan and C. O. Chui, Modeling direct interband tunneling. II. Lower-dimensional structures, Journal of Applied Physics, vol.116, issue.5, p.054509, 2014.

A. Pan and C. O. Chui, Modeling direct interband tunneling. I. Bulk semiconductors, Journal of Applied Physics, vol.116, issue.5, p.054508, 2014.

G. Bastard, Wave mechanics applied to semiconductor heterostructures, Monographies de physique (Les ditions de Physique, 1988.

B. D. Gerardot, D. Brunner, P. A. Dalgarno, P. Öhberg, S. Seidl et al., Optical pumping of a single hole spin in a quantum dot, Nature, vol.451, issue.7177, pp.441-444, 2008.

G. A. Narvaez, G. Bester, and A. Zunger, Carrier relaxation mechanisms in self-assembled(In,Ga)As?GaAsquantum dots: EfficientP?SAuger relaxation of electrons, Physical Review B, vol.74, issue.7, 2006.

S. Tomic, Intermediate-band solar cells: Influence of band formation on dynamical processes in InAs/GaAs quantum dot arrays, Physical Review B, vol.82, issue.19, 2010.

D. Guimard, R. Morihara, D. Bordel, K. Tanabe, Y. Wakayama et al., Fabrication of InAs/GaAs quantum dot solar cells with enhanced photocurrent and without degradation of open circuit voltage, Applied Physics Letters, vol.96, issue.20, p.203507, 2010.

F. K. Tutu, J. Wu, P. Lam, M. Tang, N. Miyashita et al., Antimony mediated growth of high-density InAs quantum dots for photovoltaic cells, Applied Physics Letters, vol.103, issue.4, p.043901, 2013.

P. Lam, S. Hatch, J. Wu, M. Tang, V. G. Dorogan et al., Voltage recovery in charged InAs/GaAs quantum dot solar cells, Nano Energy, vol.6, pp.159-166, 2014.

N. S. Beattie, P. See, G. Zoppi, P. M. Ushasree, M. Duchamp et al., Quantum Engineering of InAs/GaAs Quantum Dot Based Intermediate Band Solar Cells, ACS Photonics, vol.4, issue.11, pp.2745-2750, 2017.

G. Wei and S. R. Forrest, Intermediate-Band Solar Cells Employing Quantum Dots Embedded in an Energy Fence Barrier, Nano Letters, vol.7, issue.1, pp.218-222, 2007.

S. M. Hubbard, C. D. Cress, C. G. Bailey, R. P. Raffaelle, S. G. Bailey et al., Effect of strain compensation on quantum dot enhanced GaAs solar cells, Applied Physics Letters, vol.92, issue.12, p.123512, 2008.

C. G. Bailey, D. V. Forbes, R. P. Raffaelle, and S. M. Hubbard, Near 1 V open circuit voltage InAs/GaAs quantum dot solar cells, Applied Physics Letters, vol.98, issue.16, p.163105, 2011.

C. G. Bailey, D. V. Forbes, S. J. Polly, Z. S. Bittner, Y. Dai et al., Open-Circuit Voltage Improvement of InAs/GaAs Quantum-Dot Solar Cells Using Reduced InAs Coverage, IEEE Journal of Photovoltaics, vol.2, issue.3, pp.269-275, 2012.

A. Varghese, M. Yakimov, V. Tokranov, V. Mitin, K. Sablon et al., Complete voltage recovery in quantum dot solar cells due to suppression of electron capture, Nanoscale, vol.8, issue.13, pp.7248-7256, 2016.

K. A. Sablon, J. W. Little, V. Mitin, A. Sergeev, N. Vagidov et al., Strong Enhancement of Solar Cell Efficiency Due to Quantum Dots with Built-In Charge, Nano Letters, vol.11, issue.6, pp.2311-2317, 2011.