TY - JOUR
T1 - Real-time and ultrafast optical pulse quantization based on slicing the supercontinuum
AU - Guo, Ya
AU - Cai, Qiang
AU - Jia, Zhiwei
AU - Xu, Bingjie
AU - Gao, Zhensen
AU - Zhang, Qianwu
AU - Zhang, Ruonan
AU - Bogris, Adonis
AU - Shore, K. Alan
AU - Wang, Yuncai
AU - Li, Pu
N1 - Publisher Copyright:
© 2021 Chinese Optics Letters.
PY - 2021/8/10
Y1 - 2021/8/10
N2 - All-optical analog-to-digital conversion is a paramount issue in modern science. How to implement real-time and ultrafast quantization to optical pulses with different intensities in an all-optical domain is a central problem. Here, we report a realtime demonstration of an all-optical quantization scheme based on slicing the supercontinuum in a nonlinear fiber. In comparison with previous schemes through off-line analysis of the power of different optical spectral components in the supercontinuum, this, to the best of our knowledge, is the first demonstration of such functionality online in the time domain. Moreover, the extinction ratio among the quantized outputs can exceed 10 dB, which further confirms the feasibility of the proposed quantization scheme. The current 3 bit resolution in the proof-of-principle experiment is limited by the current experimental condition, but it can be expected to be greatly enhanced through improving both the spectral width of the generated supercontinuum and the number of filtering channels used.
AB - All-optical analog-to-digital conversion is a paramount issue in modern science. How to implement real-time and ultrafast quantization to optical pulses with different intensities in an all-optical domain is a central problem. Here, we report a realtime demonstration of an all-optical quantization scheme based on slicing the supercontinuum in a nonlinear fiber. In comparison with previous schemes through off-line analysis of the power of different optical spectral components in the supercontinuum, this, to the best of our knowledge, is the first demonstration of such functionality online in the time domain. Moreover, the extinction ratio among the quantized outputs can exceed 10 dB, which further confirms the feasibility of the proposed quantization scheme. The current 3 bit resolution in the proof-of-principle experiment is limited by the current experimental condition, but it can be expected to be greatly enhanced through improving both the spectral width of the generated supercontinuum and the number of filtering channels used.
KW - All-optical analog-to-digital conversion
KW - All-optical signal processing
KW - Photonic quantization
KW - Supercontinuum generation
UR - http://www.scopus.com/inward/record.url?scp=85105513790&partnerID=8YFLogxK
U2 - 10.3788/COL202119.081901
DO - 10.3788/COL202119.081901
M3 - 文章
AN - SCOPUS:85105513790
SN - 1671-7694
VL - 19
JO - Chinese Optics Letters
JF - Chinese Optics Letters
IS - 8
M1 - 081901
ER -