Continuous-wave band translation between the near-infrared and visible spectral ranges

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Continuous-wave band translation between the near-infrared and visible spectral ranges. / Jiang, Rui; Saperstein, Robert E.; Alic, Nikola et al.
Yn: Journal of Lightwave Technology, Cyfrol 25, Rhif 1, 01.01.2007, t. 58-66.

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

HarvardHarvard

Jiang, R, Saperstein, RE, Alic, N, Nezhad, M, McKinstrie, CJ, Ford, JE, Fainman, Y & Radic, S 2007, 'Continuous-wave band translation between the near-infrared and visible spectral ranges', Journal of Lightwave Technology, cyfrol. 25, rhif 1, tt. 58-66. https://doi.org/10.1109/JLT.2006.888935

APA

Jiang, R., Saperstein, R. E., Alic, N., Nezhad, M., McKinstrie, C. J., Ford, J. E., Fainman, Y., & Radic, S. (2007). Continuous-wave band translation between the near-infrared and visible spectral ranges. Journal of Lightwave Technology, 25(1), 58-66. https://doi.org/10.1109/JLT.2006.888935

CBE

Jiang R, Saperstein RE, Alic N, Nezhad M, McKinstrie CJ, Ford JE, Fainman Y, Radic S. 2007. Continuous-wave band translation between the near-infrared and visible spectral ranges. Journal of Lightwave Technology. 25(1):58-66. https://doi.org/10.1109/JLT.2006.888935

MLA

VancouverVancouver

Jiang R, Saperstein RE, Alic N, Nezhad M, McKinstrie CJ, Ford JE et al. Continuous-wave band translation between the near-infrared and visible spectral ranges. Journal of Lightwave Technology. 2007 Ion 1;25(1):58-66. doi: 10.1109/JLT.2006.888935

Author

Jiang, Rui ; Saperstein, Robert E. ; Alic, Nikola et al. / Continuous-wave band translation between the near-infrared and visible spectral ranges. Yn: Journal of Lightwave Technology. 2007 ; Cyfrol 25, Rhif 1. tt. 58-66.

RIS

TY - JOUR

T1 - Continuous-wave band translation between the near-infrared and visible spectral ranges

AU - Jiang, Rui

AU - Saperstein, Robert E.

AU - Alic, Nikola

AU - Nezhad, Maziar

AU - McKinstrie, Colin J.

AU - Ford, Joseph E.

AU - Fainman, Yeshalahu

AU - Radic, Stojan

N1 - Conference on Optical Fiber Communications/National Fiber Optic Engineers, Anaheim, CA, MAR, 2006

PY - 2007/1/1

Y1 - 2007/1/1

N2 - We introduce a low refractive index layer between the metal and the gain medium in metal-coated laser resonators and demonstrate that it can significantly reduce the dissipation losses. Analysis of a gain medium waveguide shows that for a given waveguide radius, the low index layer has an optimal thickness for which the lasing threshold gain is minimal. The waveguide analysis is used for the design of a novel three-dimensional cylindrical resonator that is smaller than the vacuum wavelength in all three dimensions and exhibits a low enough threshold gain to lase at room temperature.

AB - We introduce a low refractive index layer between the metal and the gain medium in metal-coated laser resonators and demonstrate that it can significantly reduce the dissipation losses. Analysis of a gain medium waveguide shows that for a given waveguide radius, the low index layer has an optimal thickness for which the lasing threshold gain is minimal. The waveguide analysis is used for the design of a novel three-dimensional cylindrical resonator that is smaller than the vacuum wavelength in all three dimensions and exhibits a low enough threshold gain to lase at room temperature.

U2 - 10.1109/JLT.2006.888935

DO - 10.1109/JLT.2006.888935

M3 - Article

VL - 25

SP - 58

EP - 66

JO - Journal of Lightwave Technology

JF - Journal of Lightwave Technology

SN - 0733-8724

IS - 1

ER -