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High-contrast quantum-confined Stark effect in Ge/SiGe quantum well stacks on Si with ultra-thin buffer layers

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Center for nano- and biophotonics (NB-Photonics)

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Chicago
Srinivasan, Srinivasan Ashwyn, C Porret, E Vissers, Pieter Geiregat, Dries Van Thourhout, R Loo, M Pantouvaki, and J Van Campenhout. 2018. “High-contrast Quantum-confined Stark Effect in Ge/SiGe Quantum Well Stacks on Si with Ultra-thin Buffer Layers.” In CLEO Pacific Rim 2018, Proceedings. Washington, DC, USA: Optical Society of America (OSA).
APA
Srinivasan, S. A., Porret, C., Vissers, E., Geiregat, P., Van Thourhout, D., Loo, R., Pantouvaki, M., et al. (2018). High-contrast quantum-confined Stark effect in Ge/SiGe quantum well stacks on Si with ultra-thin buffer layers. CLEO Pacific Rim 2018, Proceedings. Presented at the 13th Pacific Rim Conference on Lasers and Electro-Optics (CLEO Pacific Rim 2018), Washington, DC, USA: Optical Society of America (OSA).
Vancouver
1.
Srinivasan SA, Porret C, Vissers E, Geiregat P, Van Thourhout D, Loo R, et al. High-contrast quantum-confined Stark effect in Ge/SiGe quantum well stacks on Si with ultra-thin buffer layers. CLEO Pacific Rim 2018, Proceedings. Washington, DC, USA: Optical Society of America (OSA); 2018.
MLA
Srinivasan, Srinivasan Ashwyn et al. “High-contrast Quantum-confined Stark Effect in Ge/SiGe Quantum Well Stacks on Si with Ultra-thin Buffer Layers.” CLEO Pacific Rim 2018, Proceedings. Washington, DC, USA: Optical Society of America (OSA), 2018. Print.
@inproceedings{8615698,
  articleno    = {paper Th3C.1},
  author       = {Srinivasan, Srinivasan Ashwyn and Porret, C and Vissers, E and Geiregat, Pieter and Van Thourhout, Dries and Loo, R and Pantouvaki, M and Van Campenhout, J},
  booktitle    = {CLEO Pacific Rim 2018, Proceedings},
  isbn         = { 9781943580453},
  language     = {eng},
  location     = {Hong Kong, PR China},
  pages        = {2},
  publisher    = {Optical Society of America (OSA)},
  title        = {High-contrast quantum-confined Stark effect in Ge/SiGe quantum well stacks on Si with ultra-thin buffer layers},
  year         = {2018},
}