Broadband Surface Plasmon Lasing in One-dimensional Metallic Gratings on Semiconductor

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作者
Seung-Hyun Kim
Won Seok Han
Tae-Young Jeong
Hyang-Rok Lee
H. Jeong
D. Lee
Seung-Bo Shim
Dai-Sik Kim
Kwang Jun Ahn
Ki-Ju Yee
机构
[1] Chungnam National University,Department of Physics
[2] Electronics and Telecommunications Research Institute,Department of Physics and Astronomy
[3] Korea Research Institute of Standards and Science,Department of Energy Systems Research and Department of Physics
[4] Seoul National University,undefined
[5] Ajou University,undefined
[6] Korea Basic Science Institute,undefined
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摘要
We report surface plasmon (SP) lasing in metal/semiconductor nanostructures, where one-dimensional periodic silver slit gratings are placed on top of an InGaAsP layer. The SP nature of the lasing is confirmed from the emission wavelength governed by the grating period, polarization analysis, spatial coherence, and comparison with the linear transmission. The excellent performance of the device as an SP source is demonstrated by its tunable emission in the 400-nm-wide telecom wavelength band at room temperature. We show that the stimulated emission enhanced by the Purcell effect enables successful SP lasing at high energies above the gap energy of the gain. We also discuss the dependence of the lasing efficiency on temperature, grating dimension, and type of metal.
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