Zugriffsnummer 44179
Dokumenttyp Zeitschriftenartikel Open Access Hybrid
Peer Review mit Peer Review
Sprache Englisch
Titel Analysis of a highly efficient phase-locking stabilization method for electro-optic comb generation
Autor(in); Institution
Yang, Ruitao; Harbin Institute of Technology, Center of Ultra-Precision Optoelectronic Instrument Engineering, Harbin, CHINA
Pollinger, Florian; 5.4, Interferometrie an Maßverkörperungen, PTB-Braunschweig
Hu, Peng-Cheng; Key Lab of Ultra-precision Intelligent Instrumentation (Harbin Institute of Technology), Ministry of Industry and Information Technology, CHINA
Yang, Hongxing; Harbin Institute of Technology, Center of Ultra-Precision Optoelectronic Instrument Engineering, Harbin, CHINA
Fu, Haijin; Harbin Institute of Technology, Center of Ultra-Precision Optoelectronic Instrument Engineering, Harbin, CHINA
Fan, Zhigang; Harbin Institute of Technology, Postdoctoral Research Station of Optical Engineering, Harbin, CHINA
Tan, Jiubin; Harbin Institute of Technology, Center of Ultra-Precision Optoelectronic Instrument Engineering, Harbin, CHINA
Quelle/Jahr Applied Optics: 59 (2020), 16, 4839 - 4848
ISSN 1559-128X (PRINT) ; 2155-3165 (ONLINE)
DOI
Verlag Washington, DC: Optical Society of America
Freie Schlagworte electro-optic comb generation ; Pound-Drever-Hall stabilization ; phase-locking stabilization ; cavity stabilization
Zusammenfassung We theoretically show that a slightly modified Pound-Drever-Hall (PDH) stabilization scheme can lead to the optimum time domain characteristics for electro-optic comb generators (EOCG). The ideal locking point is located by analyzing the EOCG output pulse width. By summing up the electrical field reflected by the EOCG front mirror, a model of the phase-locking error signal is derived with the Jacobi-Anger identical transformation. The simulation and experiment show that the zero-locking point of the error signal of the modified scheme coincides well with the ideal locking point in contrast to the direct application of the PDH scheme. Finally, a power efficiency of up to 2.9% is achieved with this EOCG stabilization scheme. A relative instability of better than 2.6 × 10-8 is demonstrated by a dual comb interferometer with fixed paths.  The Allan deviation of the comb mode frequencies are smaller than 2.8 × 10-9 and 1.1 × 10-10 for average times of 1 s and 100 s, respectively.
Kostenfreier Zugang Open Access Hybrid
Themenbereich der Metrologie Länge, dimensionelle Metrologie

Zitierung

Yang, R., Pollinger, F., Hu, P.-C., Yang, H., Fu, H., Fan, Z., & Tan, J. (2020). Analysis of a highly efficient phase-locking stabilization method for electro-optic comb generation. Applied Optics, 59(16), 4839–4848. https://doi.org/10.1364/ao.389138

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