DocumentCode :
1761339
Title :
Progress Toward Realizing an Intermediate Band Solar Cell—Sequential Absorption of Photons in a Quantum Well Solar Cell
Author :
Yoshida, Manabu ; Amrania, Hemmel ; Farrell, Daniel J. ; Browne, Ben ; Yoxall, Edward ; Ekins-Daukes, N.J. ; Phillips, C.C.
Author_Institution :
Exp. Solid State Phys., Imperial Coll. London, London, UK
Volume :
4
Issue :
2
fYear :
2014
fDate :
41699
Firstpage :
634
Lastpage :
638
Abstract :
In order to realize an intermediate band solar cell, which promises high photovoltaic energy conversion efficiency, achieving higher photocurrent while maintaining the cell voltage is essential. We report on a transient photocurrent due to the sequential absorption of photons in a single quantum well by continuously pumping to stimulate interband transitions (from a valence band to an intermediate band) and showing an intersubband transition (from an intermediate band to a conduction band) with a pulsed infrared laser. We demonstrate the extent to which multiple-photon absorption can be achieved in quantum well devices and propose that a quantum well is a suitable candidate for an intermediate band solar cell. From the combination of this and other sequential absorption results, it is clear that enhancing the short lifetime of a carrier in the intermediate band is the next step toward achieving a working intermediate band solar cell. In light of this, we enhance our previous suggestion, the photon ratchet intermediate band solar cell, as a means of increasing the electron lifetime.
Keywords :
carrier lifetime; conduction bands; multiphoton spectra; photoconductivity; quantum well devices; solar cells; valence bands; conduction band; electron lifetime; interband transitions; intersubband transition; multiple-photon absorption; photocurrent; photon ratchet intermediate band solar cell; photovoltaic energy conversion efficiency; pulsed infrared laser; quantum well solar cell; sequential photon absorption; valence band; Absorption; Photoconductivity; Photonics; Photovoltaic cells; Photovoltaic systems; Quantum dots; Intermediate band (IB) solar cell; intersubband transition; quantum well (QW); sequential photon absorption;
fLanguage :
English
Journal_Title :
Photovoltaics, IEEE Journal of
Publisher :
ieee
ISSN :
2156-3381
Type :
jour
DOI :
10.1109/JPHOTOV.2014.2301891
Filename :
6736102
Link To Document :
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