-
1
-
-
84890528891
-
Solar cell efficiency tables (Version 43)
-
M. A. Green, K. Emery, Y. Hishikawa, W. Warta, and E. D. Dunlop, “Solar cell efficiency tables (version 43),” Prog. Photovoltaics 22, 1-9 (2014).
-
(2014)
Prog. Photovoltaics
, vol.22
, pp. 1-9
-
-
Green, M.A.1
Emery, K.2
Hishikawa, Y.3
Warta, W.4
Dunlop, E.D.5
-
2
-
-
84857295129
-
Photonic design principles for ultrahigh-efficiency photovoltaics
-
A. Polman and H. A. Atwater, “Photonic design principles for ultrahigh-efficiency photovoltaics,” Nat. Mater. 11, 174-177 (2012).
-
(2012)
Nat. Mater
, vol.11
, pp. 174-177
-
-
Polman, A.1
Atwater, H.A.2
-
3
-
-
77949437431
-
Light trapping in silicon nanowire solar cells
-
E. Garnett and P. Yang, “Light trapping in silicon nanowire solar cells,” Nano Lett. 10, 1082-1087 (2010).
-
(2010)
Nano Lett
, vol.10
, pp. 1082-1087
-
-
Garnett, E.1
Yang, P.2
-
4
-
-
80054010598
-
Optimized spatial correlations for broadband light trapping nanopatterns in high efficiency ultrathin film a-Si:H solar cells
-
V. E. Ferry, M. A. Verschuuren, M. C. v. Lare, R. E. I. Schropp, H. A. Atwater, and A. Polman, “Optimized spatial correlations for broadband light trapping nanopatterns in high efficiency ultrathin film a-Si:H solar cells,” Nano Lett. 11, 4239-4245 (2011).
-
(2011)
Nano Lett
, vol.11
, pp. 4239-4245
-
-
Ferry, V.E.1
Verschuuren, M.A.2
Lare, M.C.3
Schropp, R.E.4
Atwater, H.A.5
Polman, A.6
-
5
-
-
84859118429
-
Light trapping in solar cells: Can periodic beat random?
-
C. Battaglia, C.-M. Hsu, K. Söderström, J. Escarré, F.-J. Haug, M. Charrière, M. Boccard, M. Despeisse, D. T. L. Alexander, M. Cantoni, Y. Cui, and C. Ballif, “Light trapping in solar cells: Can periodic beat random?” ACS Nano 6, 2790-2797 (2012).
-
(2012)
ACS Nano
, vol.6
, pp. 2790-2797
-
-
Battaglia, C.1
Hsu, C.-M.2
Söderström, K.3
Escarré, J.4
Haug, F.-J.5
Charrière, M.6
Boccard, M.7
Despeisse, M.8
Alexander, D.T.9
Cantoni, M.10
Cui, Y.11
Ballif, C.12
-
6
-
-
84880115611
-
Optimization of non-periodic plasmonic light-trapping layers for thin-film solar cells
-
R. A. Pala, J. S. Liu, E. S. Barnard, D. Askarov, E. C. Garnett, S. Fan, and M. L. Brongersma, “Optimization of non-periodic plasmonic light-trapping layers for thin-film solar cells,” Nat. Commun. 4, 2095 (2013).
-
(2013)
Nat. Commun
, vol.4
, pp. 2095
-
-
Pala, R.A.1
Liu, J.S.2
Barnard, E.S.3
Askarov, D.4
Garnett, E.C.5
Fan, S.6
Brongersma, M.L.7
-
7
-
-
84884574134
-
Dielectric back scattering patterns for light trapping in thin-film Si solar cells
-
M. van Lare, F. Lenzmann, and A. Polman, “Dielectric back scattering patterns for light trapping in thin-film Si solar cells,” Opt. Express 21, 20738-20746 (2013).
-
(2013)
Opt. Express
, vol.21
, pp. 20738-20746
-
-
Van Lare, M.1
Lenzmann, F.2
Polman, A.3
-
8
-
-
84885095770
-
Elongated nanostructures for radial junction solar cells
-
Y. Kuang, M. D. Vece, J. K. Rath, L. van Dijk, and R. E. I. Schropp, “Elongated nanostructures for radial junction solar cells,” Rep. Prog. Phys. 76, 106502 (2013).
-
(2013)
Rep. Prog. Phys
, vol.76
, pp. 106502
-
-
Kuang, Y.1
Vece, M.D.2
Rath, J.K.3
Van Dijk, L.4
Schropp, R.E.5
-
9
-
-
84899098962
-
Light management for photovoltaics using high-index nanostructures
-
M. L. Brongersma, Y. Cui, and S. Fan, “Light management for photovoltaics using high-index nanostructures,” Nat. Mater. 13, 451-460 (2014).
-
(2014)
Nat. Mater
, vol.13
, pp. 451-460
-
-
Brongersma, M.L.1
Cui, Y.2
Fan, S.3
-
10
-
-
84975214211
-
A broadband solar absorber with 12 nm thick ultrathin a-Si layer by using random metallic nanomeshes
-
T. Sun, C. Fei Guo, F. Cao, E. Metin Akinoglu, Y. Wang, M. Giersig, Z. Ren, and K. Kempa, “A broadband solar absorber with 12 nm thick ultrathin a-Si layer by using random metallic nanomeshes,” Appl. Phys. Lett. 104, 251119 (2014).
-
(2014)
Appl. Phys. Lett
, vol.104
, pp. 251119
-
-
Sun, T.1
Fei Guo, C.2
Cao, F.3
Metin Akinoglu, E.4
Wang, Y.5
Giersig, M.6
Ren, Z.7
Kempa, K.8
-
11
-
-
84906251579
-
Nano-photonic and nano-plasmonic enhancements in thin film silicon solar cells
-
S. Pattnaik, N. Chakravarty, R. Biswas, V. Dalal, and D. Slafer, “Nano-photonic and nano-plasmonic enhancements in thin film silicon solar cells,” Sol. Energ. Mat. Sol. C. 129, 115-123 (2014).
-
(2014)
Sol. Energ. Mat. Sol. C
, vol.129
, pp. 115-123
-
-
Pattnaik, S.1
Chakravarty, N.2
Biswas, R.3
Dalal, V.4
Slafer, D.5
-
12
-
-
84903708033
-
Broadband photocurrent enhancement in a-Si:H solar cells with plasmonic back reflectors
-
S. Morawiec, M. J. Mendes, S. A. Filonovich, T. Mateus, S. Mirabella, H. Águas, I. Ferreira, F. Simone, E. Fortunato, R. Martins, F. Priolo, and I. Crupi, “Broadband photocurrent enhancement in a-Si:H solar cells with plasmonic back reflectors,” Opt. Express 22, A1059-A1070 (2014).
-
(2014)
Opt. Express
, vol.22
-
-
Morawiec, S.1
Mendes, M.J.2
Filonovich, S.A.3
Mateus, T.4
Mirabella, S.5
Águas, H.6
Ferreira, I.7
Simone, F.8
Fortunato, E.9
Martins, R.10
Priolo, F.11
Crupi, I.12
-
13
-
-
84941069936
-
-
The statistical correlations of light obey precise propagation laws as given in Ref. (24) p. 182-183. Specifically, the ensemble average behavior of an optical system depends on the cross-spectral density of incident light, which is a measure for the spectral dependence of the spatial coherence
-
The statistical correlations of light obey precise propagation laws as given in Ref. (24) p. 182-183. Specifically, the ensemble average behavior of an optical system depends on the cross-spectral density of incident light, which is a measure for the spectral dependence of the spatial coherence.
-
-
-
-
14
-
-
84907400796
-
Will rectenna solar cells be practical?
-
G. Moddel and S. Grover, eds. (Springer
-
G. Moddel, “Will rectenna solar cells be practical?” in Rectenna Solar Cells, G. Moddel and S. Grover, eds. (Springer, 2013), pp. 3-24.
-
(2013)
Rectenna Solar Cells
, pp. 3-24
-
-
Moddel, G.1
-
17
-
-
2942706001
-
Coherence properties of sunlight
-
G. S. Agarwal, G. Gbur, and E. Wolf, “Coherence properties of sunlight,” Opt. Lett. 29, 459-461 (2004).
-
(2004)
Opt. Lett
, vol.29
, pp. 459-461
-
-
Agarwal, G.S.1
Gbur, G.2
Wolf, E.3
-
18
-
-
0001102822
-
Relationships between the complex degrees of coherence in the space-time and in the space-frequency domains
-
A. T. Friberg and E. Wolf, “Relationships between the complex degrees of coherence in the space-time and in the space-frequency domains,” Opt. Lett. 20, 623-625 (1995).
-
(1995)
Opt. Lett
, vol.20
, pp. 623-625
-
-
Friberg, A.T.1
Wolf, E.2
-
19
-
-
84865794038
-
First direct measurement of the spatial coherence of sunlight
-
H. Mashaal, A. Goldstein, D. Feuermann, and J. M. Gordon, “First direct measurement of the spatial coherence of sunlight,” Opt. Lett. 37, 3516-3518 (2012).
-
(2012)
Opt. Lett
, vol.37
, pp. 3516-3518
-
-
Mashaal, H.1
Goldstein, A.2
Feuermann, D.3
Gordon, J.M.4
-
20
-
-
79952846669
-
Fundamental bounds for antenna harvesting of sunlight
-
H. Mashaal and J. M. Gordon, “Fundamental bounds for antenna harvesting of sunlight,” Opt. Lett. 36, 900-902 (2011).
-
(2011)
Opt. Lett
, vol.36
, pp. 900-902
-
-
Mashaal, H.1
Gordon, J.M.2
-
21
-
-
84898653027
-
Measuring coherence functions using non-parallel double slits
-
S. Divitt, Z. J. Lapin, and L. Novotny, “Measuring coherence functions using non-parallel double slits,” Opt. Express 22, 8277-8290 (2014).
-
(2014)
Opt. Express
, vol.22
, pp. 8277-8290
-
-
Divitt, S.1
Lapin, Z.J.2
Novotny, L.3
-
22
-
-
0002475395
-
Solar limb darkening 1986-1990 (λλ303 to 1099 nm)
-
H. Neckel and D. Labs, “Solar limb darkening 1986-1990 (λλ303 to 1099 nm),” Sol. Phys. 153, 91-114 (1994).
-
(1994)
Sol. Phys
, vol.153
, pp. 91-114
-
-
Neckel, H.1
Labs, D.2
-
23
-
-
10944225143
-
Spectral degree of coherence of a random three-dimensional electromagnetic field
-
O. Korotkova and E. Wolf, “Spectral degree of coherence of a random three-dimensional electromagnetic field,” J. Opt. Soc. Am. A 21, 2382-2385 (2004).
-
(2004)
J. Opt. Soc. Am. A
, vol.21
, pp. 2382-2385
-
-
Korotkova, O.1
Wolf, E.2
-
25
-
-
17544392525
-
Complete electromagnetic coherence in the space-frequency domain
-
T. Setälä, J. Tervo, and A. T. Friberg, “Complete electromagnetic coherence in the space-frequency domain,” Opt. Lett. 29, 328-330 (2004).
-
(2004)
Opt. Lett
, vol.29
, pp. 328-330
-
-
Setälä, T.1
Tervo, J.2
Friberg, A.T.3
-
26
-
-
61349169836
-
Atmospheric optics
-
(Wiley-VCH Verlag GmbH and Co. KGaA
-
C. F. Bohren, “Atmospheric optics,” in The Optics Encyclopedia (Wiley-VCH Verlag GmbH and Co. KGaA, 2007).
-
(2007)
The Optics Encyclopedia
-
-
Bohren, C.F.1
-
28
-
-
0038001131
-
Spatial correlations and degree of polarization in homogeneous electromagnetic fields
-
T. Setälä, M. Kaivola, and A. T. Friberg, “Spatial correlations and degree of polarization in homogeneous electromagnetic fields,” Opt. Lett. 28, 1069-1071 (2003).
-
(2003)
Opt. Lett
, vol.28
, pp. 1069-1071
-
-
Setälä, T.1
Kaivola, M.2
Friberg, A.T.3
-
29
-
-
84880613045
-
Partial polarization and electromagnetic spatial coherence of blackbody radiation emanating from an aperture
-
K. Blomstedt, T. Setälä, J. Tervo, J. Turunen, and A. T. Friberg, “Partial polarization and electromagnetic spatial coherence of blackbody radiation emanating from an aperture,” Phys. Rev. A 88, 013824 (2013).
-
(2013)
Phys. Rev. A
, vol.88
, pp. 013824
-
-
Blomstedt, K.1
Setälä, T.2
Tervo, J.3
Turunen, J.4
Friberg, A.T.5
-
33
-
-
0031646355
-
Simulation of homogeneous nonGaussian stochastic vector fields
-
R. Popescu, G. Deodatis, and J. Prevost, “Simulation of homogeneous nonGaussian stochastic vector fields,” Probabilist. Eng. Mech. 13, 1-13 (1998).
-
(1998)
Probabilist. Eng. Mech
, vol.13
, pp. 1-13
-
-
Popescu, R.1
Deodatis, G.2
Prevost, J.3
-
35
-
-
84890731289
-
Propagation of electromagnetic beams of any state of spatial coherence and polarization through multilayered stratified media
-
M. Lahiri and E. Wolf, “Propagation of electromagnetic beams of any state of spatial coherence and polarization through multilayered stratified media,” J. Opt. Soc. Am. A 30, 2547-2555 (2013).
-
(2013)
J. Opt. Soc. Am. A
, vol.30
, pp. 2547-2555
-
-
Lahiri, M.1
Wolf, E.2
-
36
-
-
0000255006
-
Two-beam interference with partially coherent light
-
B. J. Thompson and E. Wolf, “Two-beam interference with partially coherent light,” J. Opt. Soc. Am. 47, 895 (1957).
-
(1957)
J. Opt. Soc. Am
, vol.47
, pp. 895
-
-
Thompson, B.J.1
Wolf, E.2
-
37
-
-
84876766144
-
-
U. S. N. A. Office, (United States Naval Observatory/Nautical Almanac Office
-
U. S. N. A. Office, Astronomical Almanac for the Year 2013 (United States Naval Observatory/Nautical Almanac Office, 2012).
-
(2012)
Astronomical Almanac for the Year 2013
-
-
-
38
-
-
84975609216
-
Youngs interference fringes with narrow-band light,”
-
E. Wolf, “Young’s interference fringes with narrow-band light,” Opt. Lett. 8, 250-252 (1983).
-
(1983)
Opt. Lett
, vol.8
, pp. 250-252
-
-
Wolf, E.1
-
39
-
-
0038330800
-
Coherence properties of blackbody radiation. III. Cross-spectral tensors
-
C. L. Mehta and E. Wolf, “Coherence properties of blackbody radiation. III. Cross-spectral tensors,” Phys. Rev. 161, 1328-1334 (1967).
-
(1967)
Phys. Rev
, vol.161
, pp. 1328-1334
-
-
Mehta, C.L.1
Wolf, E.2
-
40
-
-
84941041496
-
Standard tables for reference solar spectral irradiances: Direct normal and hemispherical on 37° tilted surface
-
ASTM G173-03
-
ASTM G173-03(2012), “Standard tables for reference solar spectral irradiances: Direct normal and hemispherical on 37° tilted surface,” (2012). ASTM International.
-
(2012)
ASTM International
-
-
|