Enhanced timing of a 113 km O-TWTFT link with digital maximum likelihood estimation process

Fuente: arXiv
Guardado en:
Detalles Bibliográficos
Autores principales: Fang, Yu-Chen, Guan, Jian-Yu, Shen, Qi, Han, Jin-Jian, Hou, Lei, Lian, Meng-Zhe, Wang, Yong, Liu, Wei-Yue, Ren, Ji-Gang, Peng, Cheng-Zhi, Zhang, Qiang, Jiang, Hai-Feng, Pan, Jian-Wei
Formato: Preprint
Publicado: 2025
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866914487175479296
author Fang, Yu-Chen
Guan, Jian-Yu
Shen, Qi
Han, Jin-Jian
Hou, Lei
Lian, Meng-Zhe
Wang, Yong
Liu, Wei-Yue
Ren, Ji-Gang
Peng, Cheng-Zhi
Zhang, Qiang
Jiang, Hai-Feng
Pan, Jian-Wei
author_facet Fang, Yu-Chen
Guan, Jian-Yu
Shen, Qi
Han, Jin-Jian
Hou, Lei
Lian, Meng-Zhe
Wang, Yong
Liu, Wei-Yue
Ren, Ji-Gang
Peng, Cheng-Zhi
Zhang, Qiang
Jiang, Hai-Feng
Pan, Jian-Wei
contents Optical two-way time-frequency transfer (O-TWTFT), employing linear optical sampling and based on frequency combs, is a promising approach for future large-scale optical clock synchronization. It offers the dual benefits of high temporal resolution and an extensive unambiguous range. A critical challenge in establishing long-distance free-space optical links is enhancing detection sensitivity. Particularly at ultra-low received power levels, the error caused by time extraction algorithms for linear optical sampling becomes a significant hindrance to system sensitivity, surpassing the constraints imposed by quantum limitations. In this work, we introduce the Complex Least Squares (CLS) method to enhance both the accuracy and sensitivity of time extraction. Unlike most previous methods that relied solely on phase information, our scheme utilizes a maximum likelihood estimation technique incorporating both amplitude and phase data. Our experiments, conducted over a 113 km free-space link with an average link loss of up to 100 dB, achieved a record minimum received power of 0.1 nW, which is over ten times lower than previous benchmarks. The precision also approaches the quantum limitation.
format Preprint
id arxiv_https___arxiv_org_abs_2505_03131
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Enhanced timing of a 113 km O-TWTFT link with digital maximum likelihood estimation process
Fang, Yu-Chen
Guan, Jian-Yu
Shen, Qi
Han, Jin-Jian
Hou, Lei
Lian, Meng-Zhe
Wang, Yong
Liu, Wei-Yue
Ren, Ji-Gang
Peng, Cheng-Zhi
Zhang, Qiang
Jiang, Hai-Feng
Pan, Jian-Wei
Optics
Optical two-way time-frequency transfer (O-TWTFT), employing linear optical sampling and based on frequency combs, is a promising approach for future large-scale optical clock synchronization. It offers the dual benefits of high temporal resolution and an extensive unambiguous range. A critical challenge in establishing long-distance free-space optical links is enhancing detection sensitivity. Particularly at ultra-low received power levels, the error caused by time extraction algorithms for linear optical sampling becomes a significant hindrance to system sensitivity, surpassing the constraints imposed by quantum limitations. In this work, we introduce the Complex Least Squares (CLS) method to enhance both the accuracy and sensitivity of time extraction. Unlike most previous methods that relied solely on phase information, our scheme utilizes a maximum likelihood estimation technique incorporating both amplitude and phase data. Our experiments, conducted over a 113 km free-space link with an average link loss of up to 100 dB, achieved a record minimum received power of 0.1 nW, which is over ten times lower than previous benchmarks. The precision also approaches the quantum limitation.
title Enhanced timing of a 113 km O-TWTFT link with digital maximum likelihood estimation process
topic Optics
url https://arxiv.org/abs/2505.03131