TY - JOUR
T1 - Simple and efficient way to generate superbunching pseudothermal light
AU - Liu, Jianbin
AU - Zhuang, Rui
AU - Zhang, Xuexing
AU - Wei, Chaoqi
AU - Zheng, Huaibin
AU - Zhou, Yu
AU - Chen, Hui
AU - He, Yuchen
AU - Xu, Zhuo
N1 - Publisher Copyright:
© 2021 Elsevier B.V.
PY - 2021/11/1
Y1 - 2021/11/1
N2 - By modulating the intensity of laser light before rotating groundglass, the well-known pseudothermal light source can be modified into superbunching pseudothermal light source, in which the degree of second-order coherence of scattered light is larger than 2. With the modulated intensities following binary distribution, we experimentally observed the degree of second- and third-order coherence equaling 20.45 and 227.07, which is much larger than the value of thermal or pseudothermal light, 2 and 6, respectively. Numerical simulation predicts that the degree of second-order coherence can be further improved by tuning the parameters of binary distribution. It is also predicted that the quality of temporal ghost imaging can be improved with this type of superbunching pseudothermal light. This simple and efficient superbunching pseudothermal light source provides an interesting alternative to study the second- and higher-order interference of light in these scenarios where thermal or pseudothermal light source were employed.
AB - By modulating the intensity of laser light before rotating groundglass, the well-known pseudothermal light source can be modified into superbunching pseudothermal light source, in which the degree of second-order coherence of scattered light is larger than 2. With the modulated intensities following binary distribution, we experimentally observed the degree of second- and third-order coherence equaling 20.45 and 227.07, which is much larger than the value of thermal or pseudothermal light, 2 and 6, respectively. Numerical simulation predicts that the degree of second-order coherence can be further improved by tuning the parameters of binary distribution. It is also predicted that the quality of temporal ghost imaging can be improved with this type of superbunching pseudothermal light. This simple and efficient superbunching pseudothermal light source provides an interesting alternative to study the second- and higher-order interference of light in these scenarios where thermal or pseudothermal light source were employed.
KW - Degree of second-order coherence
KW - Degree of third-order coherence
KW - Photon Statistics
KW - Superbunching pseudothermal light
KW - Temporal ghost imaging
UR - https://www.scopus.com/pages/publications/85109213488
U2 - 10.1016/j.optcom.2021.127264
DO - 10.1016/j.optcom.2021.127264
M3 - 文章
AN - SCOPUS:85109213488
SN - 0030-4018
VL - 498
JO - Optics Communications
JF - Optics Communications
M1 - 127264
ER -