K. Yoshikawa, H. Kawasaki, and W. Yoshida, Silicon heterojunction solar cell with interdigitated back contacts for a photoconversion efficiency over 26%, Nat Energy, vol.2, issue.5, p.17032, 2017.

C. Strumpel, M. Mccann, and G. Beaucarne, Modifying the solar spectrum to enhance silicon solar cell efficiency-an overview of available materials, Sol Energy Mater Sol Cells, vol.91, pp.238-249, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00250328

E. Radziemska and E. Klugmann, Thermally affected parameters of the current-voltage characteristics of silicon photocell, Energ Conver Manage, vol.43, issue.14, pp.1889-1900, 2002.

E. Radziemska, The effect of temperature on the power drop in crystalline silicon solar cells, Renew Energy, vol.28, issue.1, pp.1-12, 2003.

P. Singh, S. Singh, M. Lal, and . Mh, Temperature dependence of I-V characteristics and performance parameters of silicon solar cell, Sol Energy Mater Sol Cells, vol.92, issue.12, pp.1611-1616, 2008.

M. A. Green and S. P. Bremmer, Energy conversion approaches and materials for high-efficency photovoltaics, Nat Mater, vol.16, issue.1, pp.23-34, 2017.

Y. Lee, V. A. Dao, S. M. Iftiquar, S. Kim, and J. Yi, Current transport studied of amorphous n/p junctions and its application in a-Si:H/HIT-type tandem cells, Prog Photovolt Res Appl, vol.24, pp.52-58, 2015.

M. Schnabel, M. Canino, and K. Schilinger, Monolithic Si nanocrystal/ crystalline Si tandem cells involving Si nanocrystals in SiC, Prog Photovolt Res Appl, vol.24, issue.9, pp.1165-1177, 2016.

E. Yablonovitch and G. D. Cody, Intensity enhancement in textured optical sheets, IEEE Trans Electron Devices, vol.29, issue.2, pp.300-305, 1982.

H. Sai, Y. Kanomori, K. Arafune, Y. Ohshita, and M. Yamaguchi, Light trapping effect of submicron surface textures in crystalline Si solar cells, Prog Photovolt Res Appl, vol.15, issue.5, pp.415-423, 2007.

J. Zhao and M. Green, Optimized antireflection coatings for high-efficiency silicon solar cells, IEEE Trans Electron Devices, vol.38, issue.8, pp.1925-1934, 1991.

D. Bouhafs, A. Moussi, A. Chikouche, and J. M. Ruiz, Design and simulation of antireflection coating systems for optoelectronic devices: applications to silicon solar cells, Sol Energy Mater Sol Cells, vol.52, issue.1-2, pp.79-93, 1998.

M. Cid, N. Stem, C. Brunetti, A. F. Beloto, and C. Ramos, Improvements in anti-reflection coating for high-efficiency silicon solar cells, Surf Coat Technol, vol.106, issue.2-3, pp.117-120, 1998.

K. D. Oskam, R. T. Wegh, H. Donker, E. Loef, and A. Van-meijerink, Downconversion: a new route to visible quantum cutting, J Alloys Compd, pp.421-425, 2000.

B. S. Richards, Luminescent layers for enhanced silicon solar cell performance: down-conversion, Sol Energy Mater Sol Cells, vol.90, issue.9, pp.1189-1207, 2006.

B. S. Richards, Enhancing the performance of silicon solar cells via the application of passive luminescence conversion layers, Sol Energy Mater Sol Cells, vol.90, issue.15, pp.2329-2337, 2006.

M. B. De-la-mora, Q. Amelines-sarria, B. M. Monroy, C. D. Hernandez-perez, and J. E. Lugo, Materials for downconversion in solar cells: perspectives and challenges, Sol Energy Mater Sol Cells, vol.165, pp.59-71, 2017.

T. Trupke, A. Shalav, B. S. Richards, P. Wurfel, and M. A. Green, Efficiency enhancement of solar cells by luminescent up-conversion of sunlight, Sol Energy Mater Sol Cells, vol.90, pp.3327-3338, 2006.

J. Liu, Q. Yao, and Y. Li, Effects of downconversion luminescent film in dyesensitized solar cells, Appl Phys Lett, vol.88, issue.17, p.173119, 2006.

E. Klampaftis, D. Ross, K. R. Mcintosh, and B. S. Richards, Enhancing the performance of silicon solar cells via the application of passive luminescence conversion layers, Sol Energy Mater Sol Cells, vol.93, issue.8, pp.1182-1194, 2009.

G. Lakshminarayana and J. Qiu, Near-infrared quantum cutting in RE 3+ / Yb 3+ (RE=Pr, Tb, and Tm): GeO 2-B 2 O 3-ZnO-LaF 3 glasses via downconversion, J Alloys Compd, vol.481, issue.1-2, pp.582-589, 2009.

C. Ming, F. Song, L. An, and X. Ren, Highly efficient quantum cutting in Yb/Prcodoped NaY (WO 4 ) 2 crystal, Curr Appl Phys, vol.14, issue.8, pp.1028-1030, 2014.
DOI : 10.1016/j.cap.2014.05.012

Y. S. Xu, F. Huang, and B. Fan, Quantum cutting in Pr 3+-Yb 3+ codoped chalcohalide glasses for high-efficiency c-Si solar cells, Opt Lett, vol.39, issue.8, pp.2225-2228, 2014.
DOI : 10.1364/ol.39.002225

P. Vergeer, T. Vlugt, M. Kox, M. I. Den-hertog, J. Van-der-eerden et al., Quantum cutting by cooperative energy transfer in Yb 3+, Physical Rev B, vol.71, issue.1, p.14119, 2005.
DOI : 10.1103/physrevb.71.014119

E. Cho, S. Park, and X. Hao, Silicon quantum dot/crystalline silicon solar cells, Nanotechnology, vol.19, issue.24, p.245201, 2008.

Z. Pan, G. Sekar, R. Akrobetu, R. Mu, and S. H. Morgan, Visible to near-infrared down-conversion luminescence in Tb 3+ and Yb 3+ co-doped lithium-lanthanum-aluminosilicate oxyfluoride glass and glass-ceramics, J Non Cryst Solids, vol.358, issue.15, pp.1814-1817, 2012.

R. E. Rojas-hernandez, L. F. Santos, and R. M. Almeida, Tb 3+ /Yb 3+ doped aluminosilicate phosphors for near infrared emission and efficient downconversion, JOL, vol.197, pp.180-186, 2018.

Q. Zhang, J. Wang, G. Zhang, and Q. Su, UV photon harvesting and enhanced near-infrared emission in novel quantum cutting Ca 3+ ,Tb 3+ ,Yb 3+ phosphor, J Mater Chem, vol.19, issue.38, p.7088, 2009.
DOI : 10.1039/b906954b

H. Lin, S. Zhou, and H. Teng, Near infrared quantum cutting in heavy Yb doped Ce 0.03 Yb 3x Y (2.97-3x) Al 5 O 12 transparent ceramics for crystalline silicon solar cells, J Appl Phys, vol.107, issue.4, p.43107, 2010.

R. Paschotta, J. Nilsson, P. R. Barber, J. E. Caplen, A. C. Tropper et al., Lifetime quenching in Yb-doped fibres, Opt Commun, vol.136, issue.56, pp.375-378, 1997.

Y. An, C. Labbé, J. Cardin, M. Morales, and F. Gourbilleau, Highly efficient infrared quantum cutting in Tb 3+ ?Yb 3+ codoped silicon oxynitride for solar cell applications, Adv Opt Mater, vol.1, issue.11, pp.855-862, 2013.
DOI : 10.1002/adom.201300186

URL : https://hal.archives-ouvertes.fr/hal-01138682

L. Dumont, J. Cardin, and P. Benzo, SiN 3+-Yb 3+ , an efficient down-conversion layer compatible with a silicon solar cell process, Sol Energy Mater Sol Cells, vol.145, pp.84-92, 2016.

L. Dumont, P. Benzo, and J. Cardin, Down-shifting Si-based layer for Si solar applications, Sol Energy Mater Sol Cells, vol.169, pp.132-144, 2017.
DOI : 10.1016/j.solmat.2017.05.011

URL : https://hal.archives-ouvertes.fr/hal-01528406

F. T. Rabouw and A. Meijerink, Modeling the cooperative energy transfer dynamics of quantum cutting for solar cells, J Phys Chem C, vol.119, pp.2364-2370, 2015.

F. Gourbilleau, R. Madelon, C. Dufour, and R. Rizk, Fabrication and optical properties of Er-doped multilayers Si-rich SiO 2 /SiO 2 : size control, optimum Er-Si coupling and interaction distance monitoring, Opt Mater, vol.27, issue.5, pp.868-875, 2005.

O. Debieu, R. P. Nalini, J. Cardin, X. Portier, J. Perrière et al., Structural and optical characterization of pure Si-rich nitride thin films, Nanoscale Res Lett, vol.8, issue.1, p.31, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01138071

A. R. Forouhi and I. Bloomer, Optical dispersion relations for amorphous semiconductors and amorphous dielectrics, Phys Rev B, vol.34, issue.10, pp.7018-7026, 1986.
DOI : 10.1103/physrevb.34.7018

H. Jeong, S. Seo, and J. H. Shin, Excitation mechanism of visible, Tb 3+ photoluminescence from Tb-doped silicon oxynitride, Appl Phys Lett, vol.88, issue.16, p.161910, 2006.

F. Auzel, Upconversion and anti-stokes processes with f and d ions in solids, Chem Rev, vol.104, issue.1, pp.139-173, 2004.

C. Labbé, Y. T. An, and G. Zatryb, Structural and emission properties of Tb 3+-doped nitrogen-rich silicon oxynitride films, Nanotechnology, vol.28, issue.11, p.115710, 2017.

E. Bustarret, M. Bensouda, M. C. Habrard, J. C. Bruyère, S. Poulin et al., Configurational statistics in a-Si x N y H z alloys: a quantitative bonding analysis, Phys Rev B, vol.38, p.8171, 1998.

T. Makino, Composition and structure control by source gas ratio in LPCVD SiN x, Electrochem Soc, vol.130, issue.2, pp.450-455, 1983.
DOI : 10.1149/1.2119729

E. J. Kirkla, R. F. Loane, and J. Silcox, simulation of annular dark field stem images using a modified multislice method, Ultramicroscopy, vol.23, p.77, 1987.

S. J. Pennycook, Z-contrast stem for materials science, Ultramicroscopy, vol.58, 1989.
DOI : 10.1016/0304-3991(89)90173-3

D. Navarro-urrios, Y. Lebour, and O. Jambois, Optically active Er 3+ ions in SiO 2 codoped with Si nanoclusters, J Appl Phys, vol.106, issue.9, p.93107, 2009.
DOI : 10.1063/1.3253753

URL : https://hal.archives-ouvertes.fr/hal-00432160

J. C. Slater, Atomic radii in crystals, J Chem Phys, vol.41, issue.10, pp.3199-3204, 1964.
DOI : 10.1063/1.1725697

M. J. Kerr, A. Cuevas, and R. A. Sinton, Generalized analysis of quasi-steadystate and transient decay open circuit voltage measurements, J Appl Phys, vol.91, issue.1, pp.399-404, 2002.
DOI : 10.1063/1.1416134