TY - JOUR
T1 - An alternative method to fabricate the planar-type resonant-cavity light-emitting diodes by using silicon oxide for short-reach communications
AU - Tsai, Chia Lung
AU - Chou, Yi Lun
AU - Lin, Ray Ming
AU - Lee, Feng Ming
AU - Wu, Meng Chyi
AU - Ko, Sun Chien
PY - 2007/12
Y1 - 2007/12
N2 - In this article, the silicon oxide (SiOx) planarization technique is presented to fabricate the 650-nm resonant-cavity light-emitting diodes (RCLEDs). The performances of RCLEDs are characterized by forward voltage, light output power, external quantum efficiency, emission spectrum, and dynamic response. As a result, the device with the SiOx-planarized layer exhibits a low operating voltage of 2.3 V at 20 mA, a maximum light output power of 304 μW at 15 mA, and the best external quantum efficiency of 3% at 1.2 mA. In addition, the SiOx-planarized device exhibits temperature insensitivity as compared to the device without it. The RCLED with a 30-μm diameter shows the maximum 3 dB frequency bandwidth of 275 MHz at a driving current of 40 mA. Finally, the RCLED with a SiOx-planarized layer shows a clear eye-opening feature as operating at 100 Mbit/s at 20 mA. These results indicate that such LEDs are excellent candidates for use in high-speed short-reach plastic optical fiber communications.
AB - In this article, the silicon oxide (SiOx) planarization technique is presented to fabricate the 650-nm resonant-cavity light-emitting diodes (RCLEDs). The performances of RCLEDs are characterized by forward voltage, light output power, external quantum efficiency, emission spectrum, and dynamic response. As a result, the device with the SiOx-planarized layer exhibits a low operating voltage of 2.3 V at 20 mA, a maximum light output power of 304 μW at 15 mA, and the best external quantum efficiency of 3% at 1.2 mA. In addition, the SiOx-planarized device exhibits temperature insensitivity as compared to the device without it. The RCLED with a 30-μm diameter shows the maximum 3 dB frequency bandwidth of 275 MHz at a driving current of 40 mA. Finally, the RCLED with a SiOx-planarized layer shows a clear eye-opening feature as operating at 100 Mbit/s at 20 mA. These results indicate that such LEDs are excellent candidates for use in high-speed short-reach plastic optical fiber communications.
KW - Resonant-cavity light-emitting diodes (RCLEDs)
KW - Short-reach communication
KW - SiO planarization process
UR - https://www.scopus.com/pages/publications/44749089889
U2 - 10.1016/j.mssp.2008.02.002
DO - 10.1016/j.mssp.2008.02.002
M3 - 文章
AN - SCOPUS:44749089889
SN - 1369-8001
VL - 10
SP - 235
EP - 240
JO - Materials Science in Semiconductor Processing
JF - Materials Science in Semiconductor Processing
IS - 6
ER -