DocumentCode
836273
Title
All-Optical Switching in Plant Blue Light Photoreceptor Phototropin
Author
Roy, Sukhdev ; Kulshrestha, Kapil
Author_Institution
Dept. of Phys. & Comput. Sci., Dayalbagh Educational Inst., Agra
Volume
5
Issue
4
fYear
2006
Firstpage
281
Lastpage
287
Abstract
We theoretically analyze all-optical switching in the recently characterized LOV2 domain from Avena sativa (oat) phot1 phototropin, a blue-light plant photoreceptor, based on nonlinear intensity-induced excited-state absorption. The transmission of a cw probe laser beam at 660 nm corresponding to the peak absorption of the first excited L-state, through the LOV2 sample, is switched by a pulsed pump laser beam at 442 nm that corresponds to the maximum initial D state absorption. The switching characteristics have been analyzed using the rate equation approach, considering all the three intermediate states and transitions in the LOV2 photocycle. It is shown that for a given pump pulse intensity, there is an optimum pump pulsewidth for which the switching contrast is maximum. It is shown that the probe laser beam can be completely switched off (100% modulation) by the pump laser beam at 50 kW/cm2 for a concentration of 1 mM with sample thickness of 5.5 mm. The switching characteristics are sensitive to various parameters such as concentration, rate constant of L-state, peak pump intensity and pump pulse width. At typical values, the switch-off and switch-on time is 1.6 and 22.3 mus, respectively. The switching characteristics have also been used to design all-optical not and the universal nor and nand logic gates
Keywords
botany; excited states; light absorption; molecular biophysics; proteins; 1.6 mus; 22.3 mus; 442 nm; 5.5 mm; 660 nm; Avena sativa; LOV2 domain; LOV2 photocycle; all-optical switching; cw probe laser beam; nonlinear intensity-induced excited-state absorption; oat; plant blue light photoreceptor phototropin; rate equation approach; Absorption; Laser beams; Laser excitation; Laser theory; Laser transitions; Optical pulses; Photoreceptors; Probes; Pump lasers; Space vector pulse width modulation; All-optical switching; optical computing; optical modulation; phototropin; Avena sativa; Computer Simulation; Dose-Response Relationship, Radiation; Flavoproteins; Light; Models, Biological; Models, Chemical; Models, Molecular; Photoreceptors; Protein Conformation; Radiation Dosage;
fLanguage
English
Journal_Title
NanoBioscience, IEEE Transactions on
Publisher
ieee
ISSN
1536-1241
Type
jour
DOI
10.1109/TNB.2006.886549
Filename
4016054
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