Highly coherent, flat, and broadband time-stretched swept source based on extra-cavity spectral shaping assisted by a booster semiconductor optical amplifier
We demonstrate a flat broadband time-stretched swept source based on extra-cavity spectral shaping. By adjusting the polarization-dependent gain profile and driving current of the booster optical amplifier (BOA), extra-cavity spectral shaping is optimized to generate output with a 1-dB bandwidth of...
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Veröffentlicht in: | Optics express 2022-09, Vol.30 (19), p.33708-33720 |
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creator | Chen, Hongjie Li, Yujia Huang, Dongmei Shi, Yihuan Li, Feng Lu, Chao Wai, P. K. A. |
description | We demonstrate a flat broadband time-stretched swept source based on extra-cavity spectral shaping. By adjusting the polarization-dependent gain profile and driving current of the booster optical amplifier (BOA), extra-cavity spectral shaping is optimized to generate output with a 1-dB bandwidth of ∼100 nm, 3-dB bandwidth of ∼140 nm and output power of ∼21.4 mW. The short-term and long-term stabilities are characterized. The average cross correlation of 183,485 round trips is 0.9997 with a standard deviation of 2×10 −5 , indicating high single-shot spectral similarity and high coherence. The noise floor of relative spectral energy jitter is −141.7 dB/Hz, indicating a high short-term spectral energy stability. The proposed highly stable flat broadband time-stretched swept source is applied to an optical coherence tomography (OCT) system. The axial resolution is 10.8 µm. The proposed swept source can serve as excellent light sources in ultra-fast coherent detection systems for high precision sensing and imaging. |
doi_str_mv | 10.1364/OE.468042 |
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K. A.</creator><creatorcontrib>Chen, Hongjie ; Li, Yujia ; Huang, Dongmei ; Shi, Yihuan ; Li, Feng ; Lu, Chao ; Wai, P. K. A.</creatorcontrib><description>We demonstrate a flat broadband time-stretched swept source based on extra-cavity spectral shaping. By adjusting the polarization-dependent gain profile and driving current of the booster optical amplifier (BOA), extra-cavity spectral shaping is optimized to generate output with a 1-dB bandwidth of ∼100 nm, 3-dB bandwidth of ∼140 nm and output power of ∼21.4 mW. The short-term and long-term stabilities are characterized. The average cross correlation of 183,485 round trips is 0.9997 with a standard deviation of 2×10 −5 , indicating high single-shot spectral similarity and high coherence. The noise floor of relative spectral energy jitter is −141.7 dB/Hz, indicating a high short-term spectral energy stability. The proposed highly stable flat broadband time-stretched swept source is applied to an optical coherence tomography (OCT) system. The axial resolution is 10.8 µm. 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K. A.</creatorcontrib><title>Highly coherent, flat, and broadband time-stretched swept source based on extra-cavity spectral shaping assisted by a booster semiconductor optical amplifier</title><title>Optics express</title><description>We demonstrate a flat broadband time-stretched swept source based on extra-cavity spectral shaping. By adjusting the polarization-dependent gain profile and driving current of the booster optical amplifier (BOA), extra-cavity spectral shaping is optimized to generate output with a 1-dB bandwidth of ∼100 nm, 3-dB bandwidth of ∼140 nm and output power of ∼21.4 mW. The short-term and long-term stabilities are characterized. The average cross correlation of 183,485 round trips is 0.9997 with a standard deviation of 2×10 −5 , indicating high single-shot spectral similarity and high coherence. The noise floor of relative spectral energy jitter is −141.7 dB/Hz, indicating a high short-term spectral energy stability. The proposed highly stable flat broadband time-stretched swept source is applied to an optical coherence tomography (OCT) system. The axial resolution is 10.8 µm. 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A.</creatorcontrib><collection>CrossRef</collection><collection>MEDLINE - Academic</collection><jtitle>Optics express</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Chen, Hongjie</au><au>Li, Yujia</au><au>Huang, Dongmei</au><au>Shi, Yihuan</au><au>Li, Feng</au><au>Lu, Chao</au><au>Wai, P. K. A.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Highly coherent, flat, and broadband time-stretched swept source based on extra-cavity spectral shaping assisted by a booster semiconductor optical amplifier</atitle><jtitle>Optics express</jtitle><date>2022-09-12</date><risdate>2022</risdate><volume>30</volume><issue>19</issue><spage>33708</spage><epage>33720</epage><pages>33708-33720</pages><issn>1094-4087</issn><eissn>1094-4087</eissn><abstract>We demonstrate a flat broadband time-stretched swept source based on extra-cavity spectral shaping. By adjusting the polarization-dependent gain profile and driving current of the booster optical amplifier (BOA), extra-cavity spectral shaping is optimized to generate output with a 1-dB bandwidth of ∼100 nm, 3-dB bandwidth of ∼140 nm and output power of ∼21.4 mW. The short-term and long-term stabilities are characterized. The average cross correlation of 183,485 round trips is 0.9997 with a standard deviation of 2×10 −5 , indicating high single-shot spectral similarity and high coherence. The noise floor of relative spectral energy jitter is −141.7 dB/Hz, indicating a high short-term spectral energy stability. The proposed highly stable flat broadband time-stretched swept source is applied to an optical coherence tomography (OCT) system. The axial resolution is 10.8 µm. The proposed swept source can serve as excellent light sources in ultra-fast coherent detection systems for high precision sensing and imaging.</abstract><doi>10.1364/OE.468042</doi><tpages>13</tpages><orcidid>https://orcid.org/0000-0003-2862-2760</orcidid><oa>free_for_read</oa></addata></record> |
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title | Highly coherent, flat, and broadband time-stretched swept source based on extra-cavity spectral shaping assisted by a booster semiconductor optical amplifier |
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