Publications
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. Photophysics of 9-amino acridine hydrochloride hydrate single microcrystals. Chemical PhysicsChemical Physics. 2006;326:521-526.
. Photophysics of 9-aminoacridine hydrochloride hydrate single microcrystals. Chem. Phys.Chem. Phys. 2006;326:521-526.
. Concentration sensing based on radiative rate enhancement from a single microcavity. Chemical Physics LettersChemical Physics Letters. 2005;415:15-19.
. Concentration sensing based on radiative rate enhancement from a single microcavity. Chem. Phys. Lett.Chem. Phys. Lett. 2005;415:15-19.
. Effect of adsorbed concentration on the radiative rate enhancement of photoexcited molecules embedded in single microspheres. Journal of Chemical PhysicsJournal of Chemical Physics. 2005;123.
. Effect of adsorbed concentration on the radiative rate enhancement of photoexcited molecules embedded in single microspheres. J. Chem. Phys.J. Chem. Phys. 2005;123:204713/1-204713/7.
. Cavity quantum electrodynamic effects and control of radiative rate of 9-amino acridine hydrochloride hydrate. Chemical Physics LettersChemical Physics Letters. 2003;371:327-332.
. Cavity quantum electrodynamic effects and control of radiative rate of 9-amino acridine hydrochloride hydrate. Chem. Phys. Lett.Chem. Phys. Lett. 2003;371:327-332.
. Theoretical calculations on morphology dependent resonances of microparticles and their effects on the spontaneous emission of dye molecules. Indian J. Phys., BIndian J. Phys., B. 2001;75B:539-543.
. Theoretical calculations on morphology dependent resonances of microparticles and their effects on the spontaneous emission of dye molecules. Indian J. Phys., BIndian J. Phys., B. 2001;75B:539-543.
