• Photonic Sensors
  • Vol. 1, Issue 3, 222 (2011)
Kevin HSU1、*, Panomsak MEEMON2、3, Kye-Sung LEE3, Peter J. DELFYETT2, and Jannick P. ROLLAND2、3
Author Affiliations
  • 1Micron Optics, Inc., Atlanta, Georgia 30345, USA
  • 2CREOL, The College of Optics and Photonics, University of Central Florida, Orlando, Florida 32816, USA
  • 3The Institute of Optics, University of Rochester, Rochester, New York 14627, USA
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    DOI: 10.1007/s13320-010-0006-z Cite this Article
    Kevin HSU, Panomsak MEEMON, Kye-Sung LEE, Peter J. DELFYETT, Jannick P. ROLLAND. Broadband Fourier-Domain Mode-Locked Lasers[J]. Photonic Sensors, 2011, 1(3): 222 Copy Citation Text show less
    References

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    [2] R. Huber, M. Wojtkowski, K. Taira, J. G. Fujimoto, and K. Hsu, “Amplified, frequency swept lasers for frequency domain reflectometry and OCT imaging: Design and Scaling Principles,” Optics Express, vol. 13, no. 9, pp. 3513-3528, 2005.

    [3] J. Zhang, Q. Wang, B. Rao, Z. Chen, and K. Hsu, “Swept laser source at 1 micron for Fourier domain optical coherence tomography,” Appl. Physics Lett., vol. 89, no. 7, pp. 073901(1-3), 2006.

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    [5] K. Hsu, T. Haber, J. Mock, J. Volcy, and T. W. Graver, “High-speed swept-laser interrogation system for vibration monitoring,” Structural Health Monitoring, Lancaster, PA: DEStech Publications, 2003, pp. 1043-1050.

    [6] R. Huber, M. Wojtkowski, and J. G. Fujimoto, “Fourier Domain Mode Locking (FDML): A new laser operating regime and applications for optical coherence tomography,” Optics Express, vol. 14, no. 8, pp. 3225-3237, 2006.

    [7] R. Huber, D. C. Adler, V. J. Srinivasan, and J. G. Fujimoto, “Fourier domain mode locking at 1050 nm for ultra-high-speed optical coherence tomography of the human retina at 236,000 axial scans per second,” Optics Letters, vol. 32, no. 14, pp. 2049-2051, 2007.

    [8] D. C. Adler, S. W. Huang, R. Huber, and J. G. Fujimoto, “Photothermal detection of gold nanoparticles using phase-sensitive optical coherence tomography,” Optics Express, vol. 16, no. 7, pp. 4376-4393, 2008.

    [9] A. Bilenca, S. H. Yun, G. J. Tearney, and B. E. Bouma, “Numerical study of wavelength-swept semiconductor ring lasers: the role of refractive index nonlinearities in semiconductor optical amplifiers and implications for biomedical imaging applications,” Optics Letters, vol. 31, no. 6, pp. 760-762, 2006.

    [10] W. Y. Oh, S. H. Yun, G. J. Tearney, and B. E. Bouma, “Wide tuning range wavelength-swept laser with two semiconductor optical amplifiers,” IEEE Photon. Technol. Lett., vol. 17, no. 3, pp. 678-680, 2005.

    [11] M. Y. Jeon, J. Zhang, Q. Wang, and Z. Chen, “High-speed and wide bandwidth Fourier domain mode-locked wavelength swept laser with multiple SOAs,” Optics Express, vol. 16, no. 4, pp. 2547-2554, 2008.

    [12] K. Lee, P. Meemon, W. Dallas, K. Hsu, and J. P. Rolland, “Dual detection full range frequency domain optical coherence tomography,” Opt. Lett., vol. 35, no. 7, pp. 1058-1060, 2010.

    [13] P. Meemon, K. S. Lee, and J. P. Rolland, “Doppler imaging with dual-detection full-range frequency domain optical coherence tomography,” Biomed. Opt. Express, vol. 1, no. 2, pp. 537-552, 2010.

    [14] P. Meemon and J. P. Rolland, “Swept-source based, single-shot, multi-detectable velocity range Doppler optical coherence tomography,” Biomed. Opt. Express, vol. 1, no. 3, pp. 955-966, 2010.

    CLP Journals

    [1] Dongmei Huang, Feng Li, Chao Shang, Zihao Cheng, S. T. Chu, P. K. A. Wai. Frequency comb swept laser with a high-Q microring filter[J]. Photonics Research, 2020, 8(6): 904

    Kevin HSU, Panomsak MEEMON, Kye-Sung LEE, Peter J. DELFYETT, Jannick P. ROLLAND. Broadband Fourier-Domain Mode-Locked Lasers[J]. Photonic Sensors, 2011, 1(3): 222
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