Nan Shen, Ph.D.

Affiliations: 
2003 Harvard University, Cambridge, MA, United States 
Area:
Ultrafast Physics, Materials Science and Chemistry
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"Nan Shen"
Mean distance: 13.9
 
SNBCP

Parents

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Eric Mazur grad student 2003 Harvard
 (Photodisruption in biological tissues using femtosecond laser pulses.)
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Publications

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Suratwala T, Steele R, Destino J, et al. (2020) Sapphire advanced mitigation process: wet etch to expose sub-surface damage and increase laser damage resistance and mechanical strength. Applied Optics. 59: 1602-1610
Shen N, Bude JD, Ly S, et al. (2019) Enhancement of laser material drilling using high-impulse multi-laser melt ejection. Optics Express. 27: 19864-19886
Ly S, Guss G, Rubenchik AM, et al. (2019) Resonance excitation of surface capillary waves to enhance material removal for laser material processing. Scientific Reports. 9: 8152
Keller WJ, Shen N, Rubenchik AM, et al. (2019) Physics of picosecond pulse laser ablation Journal of Applied Physics. 125: 085103
Sulaiman I, Wu BG, Li Y, et al. (2018) Evaluation of the airway microbiome in non-tuberculous mycobacteria. The European Respiratory Journal
Laurence TA, Negres RA, Feigenbaum E, et al. (2018) Laser-induced modifications of HfO2 coatings using picosecond pulses at 1053 nm: Using polarization to isolate surface defects Journal of Applied Physics. 124: 083102
Laurence TA, Negres RA, Ly S, et al. (2017) Role of defects in laser-induced modifications of silica coatings and fused silica using picosecond pulses at 1053 nm: II. Scaling laws and the density of precursors. Optics Express. 25: 15381-15401
Ly S, Shen N, Negres RA, et al. (2017) The role of defects in laser-induced modifications of silica coatings and fused silica using picosecond pulses at 1053 nm: I. Damage morphology. Optics Express. 25: 15161-15178
Elhadj S, Yoo J, Negres RA, et al. (2017) Optical damage performance of conductive widegap semiconductors: spatial, temporal, and lifetime modeling Optical Materials Express. 7: 202-212
Yoo JH, Menor MG, Adams JJ, et al. (2016) Laser damage mechanisms in conductive widegap semiconductor films. Optics Express. 24: 17616-17634
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