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- Breaking the Phonon Bottleneck for Holes in Semiconductor Quantum Dots Ryan R. Cooney, Samuel L. Sewall, Kevin E. H. Anderson, Eva A. Dias, and Patanjali Kambhampati*
- Un laser, c'est un peu comme un sprinter, explique Patanjali Kambhampati. Quand il
- Teaching Quantum Dots how to Amplify Light Gain control in semiconductor quantum dots via state-resolved optical pumping
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- Experimental tests of effective mass and atomistic approaches to quantum dot electronic structure: Ordering of electronic states
- State-resolved manipulations of optical gain in semiconductor quantum dots: Size universality, gain tailoring, and surface effects
- Gain Control in Semiconductor Quantum Dots via State-Resolved Optical Pumping Ryan R. Cooney, Samuel L. Sewall, D. M. Sagar, and Patanjali Kambhampati*
- Single Dot Spectroscopy of Two-Color Quantum Dot/Quantum Shell Nanostructures Eva A. Dias, Amy F. Grimes, Douglas S. English,*,, and Patanjali Kambhampati*,
- State-resolved studies of biexcitons and surface trapping dynamics in semiconductor quantum dots
- Size dependent, state-resolved studies of exciton-phonon couplings in strongly confined semiconductor quantum dots
- State-to-state exciton dynamics in semiconductor quantum dots Samuel L. Sewall, Ryan R. Cooney, Kevin E. H. Anderson, Eva A. Dias, and Patanjali Kambhampati*
- National Science and Technology Council Committee on Technology
- enough energy to kick-start the reaction. A secondpulseisthenusedtoprobethesystem
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- Noise analysis and noise reduction methods in kilohertz pump-probe experiments
- Direct observation of the structure of band-edge biexcitons in colloidal semiconductor CdSe quantum dots
- Unified picture of electron and hole relaxation pathways in semiconductor quantum dots Ryan R. Cooney, Samuel L. Sewall, Eva A. Dias, D. M. Sagar, Kevin E. H. Anderson, and Patanjali Kambhampati*
- State-Resolved Exciton-Phonon Couplings in CdSe Semiconductor Quantum Dots D. M. Sagar, Ryan R. Cooney, Samuel L. Sewall, and Patanjali Kambhampati*
- Opening for a Postdoctoral Fellow in Ultrafast Spectroscopy of Semiconductor Nanostructures