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GaSb SLDs and gain-chips for sensing applications in the 2-2.5 micron wavelength range

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Project
Center for nano- and biophotonics (NB-Photonics)
Project
FireSpec (Integrated spectroscopic sensors for the risk assessment of fires)

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Citation

Please use this url to cite or link to this publication:

Chicago
Simonyte, I., Ruijun Wang, K Vizbaras, Günther Roelkens, and A Vizbaras. 2017. “GaSb SLDs and Gain-chips for Sensing Applications in the 2-2.5 Micron Wavelength Range.” In International Workshop on Opportunities and Challenges in Mid-infrared Laser-based Gas Sensing (mirsens 4), 69.
APA
Simonyte, I., Wang, R., Vizbaras, K., Roelkens, G., & Vizbaras, A. (2017). GaSb SLDs and gain-chips for sensing applications in the 2-2.5 micron wavelength range. International Workshop on opportunities and challenges in mid-infrared laser-based gas sensing (mirsens 4) (p. 69).
Vancouver
1.
Simonyte I, Wang R, Vizbaras K, Roelkens G, Vizbaras A. GaSb SLDs and gain-chips for sensing applications in the 2-2.5 micron wavelength range. International Workshop on opportunities and challenges in mid-infrared laser-based gas sensing (mirsens 4). 2017. p. 69.
MLA
Simonyte, I., Ruijun Wang, K Vizbaras, et al. “GaSb SLDs and Gain-chips for Sensing Applications in the 2-2.5 Micron Wavelength Range.” International Workshop on Opportunities and Challenges in Mid-infrared Laser-based Gas Sensing (mirsens 4). 2017. 69. Print.
@inproceedings{8527682,
  author       = {Simonyte, I. and Wang, Ruijun and Vizbaras, K and Roelkens, G{\"u}nther and Vizbaras, A},
  booktitle    = {International Workshop on opportunities and challenges in mid-infrared laser-based gas sensing (mirsens 4)},
  location     = {Wroclaw, Poland},
  pages        = {1},
  title        = {GaSb SLDs and gain-chips for sensing applications in the 2-2.5 micron wavelength range},
  year         = {2017},
}