Zobrazeno 1 - 10
of 4 425
pro vyhledávání: '"Connolly J."'
Autor:
Williams, M., Lennarz, A., Laird, A. M., Battino, U., Connolly, J. José D., Ruiz, C., Chen, A., Davids, B., Esker, N., Fulton, B. R., Garg, R., Gay, x M., Greife, U., Hager, U., Hutcheon, D., Lovely, M., Lyons, S., Psaltis, A., Riley, J. E., Tattersall, A.
Publikováno v:
Phys. Rev. C 102, 035801 (2020)
The abundances of sodium and oxygen are observed to be anti-correlated in all well-studied globular clusters. Asymptotic giant branch (AGB) stars undergoing hot bottom burning (HBB) are thought to be prime candidates for producing sodium-rich oxygen-
Externí odkaz:
http://arxiv.org/abs/1910.01698
Autor:
Daveson, B.A., Blanchard, M., Davis, W.R., Connolly, J., Clapham, S., William, L., Kaltner, M., Currow, D.C., Yates, P., Clark, K., Eagar, K.
Publikováno v:
In Australian and New Zealand Journal of Public Health April 2023 47(2)
Akademický článek
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Autor:
Rohr, C, Abbott, P, Ballard, I M, Bushnell, D B, Connolly, J P, Daukes, N J Ekins, Barnham, K W J
Publikováno v:
Chapter 5 in "Next Generation Photovoltaics High Efficiency through Full Spectrum Utilization", Edited by Antonio Mart\'i and Antonio Luque Taylor & Francis 2003 Print ISBN: 978-0-7503-0905-9 eBook ISBN: 978-1-4200-3386-1
The fundamental efficiency limit of a single bandgap solar cell is about 31% at one sun with a bandgap of about Eg = 1.35 eV (1), determined by the trade-off of maximising current with a smaller bandgap and voltage with a larger bandgap. Multiple ban
Externí odkaz:
http://arxiv.org/abs/1606.05128
Autor:
Connolly, J. P., Barnham, K. W. J., Nelson, J., Griffin, P., Haarpaintner, G., Roberts, C., Pate, M., Roberts, J. S.
The GaAs/AlGaAs materials system is well suited to multi-bandgap applications such as the multiple quantum well solar cell. GaAs quantum wells are inserted in the undoped AlGaAs active region of a pin structure to extend the absorption range while re
Externí odkaz:
http://arxiv.org/abs/1606.02884
Autor:
Connolly, J. P., Koduvelikulathu, Lejo J., Mencaraglia, D., Rimada, Julio C., Nejim, Ahmed, Sanchez, G.
While renewable energies are achieving parity around the globe, efforts to reach higher solar cell efficiencies becomes ever more difficult as they approach the limiting efficiency. The so-called third generation concepts attempt to break this limit
Externí odkaz:
http://arxiv.org/abs/1511.04724
Akademický článek
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Autor:
Renard, C., Cherkashin, N., Jaffré, A., Molière, T., Vincent, L., Michel, A., Alvarez, J., Connolly, J. P., Kleider, J. -P., Mencaraglia, D., Bouchier, D.
To date, high efficiency multijunction solar cells have been developed on Ge or GaAs substrates for space applications, and terrestrial applications are hampered by high fabrication costs. In order to reduce this cost, we propose a breakthrough techn
Externí odkaz:
http://arxiv.org/abs/1312.3570
Single junction Si solar cells dominate photovoltaics but are close to their efficiency limits. This paper presents ideal limiting efficiencies for tandem and triple junction multijunction solar cells subject only to the constraint of the Si bandgap
Externí odkaz:
http://arxiv.org/abs/1312.2908