Total citations: 2000+, h-index: 25, i-10 index: 36聽()

(鈥) Invited

2018.

  1. B. Yao, S.-W. Huang*, Y. Liu, et al., 鈥淕ate-tunable frequency combs in graphene-nitride microresonators鈥, Nature accepted (2018). *equal contribution and corresponding author

2017.

  1. B. Yao, Y. Liu, S.-W. Huang, et al., 鈥淏roadband gate-tunable THz plasmons in graphene heterostructures鈥, Nat. Photon. 12, 22 (2017)

  2. S.-W. Huang, J. Yang, S.-H. Yang, et al., 鈥淕lobally stable microresonator Turing pattern formation for coherent high-power THz radiation on-chip鈥, Phys. Rev. X 7, 041002 (2017).

  3. B. Li, S.-W. Huang*, Y. Li, et al., 鈥淧anoramic-reconstruction temporal imaging for seamless measurements of slowly-evolved femtosecond pulse dynamics鈥, Nature Commun. 8, 61 (2017). *equal contribution and corresponding author

  4. H. Zhou, S.-W. Huang*, X. Li, et al., 鈥淩eal-time dynamics and cross-correlation gating spectroscopy of free-carrier Drude slow-light solitons鈥, Light Sci. Appl. 6, e17008 (2017). *equal contribution.

  5. J. Wu, S.-W. Huang*, Y. Huang, et al., 鈥淢esoscopic chaos mediated by Drude electron-hole plasma in silicon optomechanical oscillators鈥, Nature Commun. 8, 15570 (2017). *equal contribution

  6. S.-W. Huang, A. K. Vinod, J. Yang, et al., 鈥淨uasi-phase-matched multispectral Kerr frequency comb鈥, Opt. Lett. 42, 2110 (2017).

  7. B. Yao, C. Yu, Y. Wu, S.-W. Huang, et al., 鈥淕raphene-enhanced Brillouin optomechanical microresonator for ultrasensitive gas detection鈥, Nano Lett. 17, 4996 (2017).

  8. B. C. Yao, Y. J. Rao, S.-W. Huang, et al., 鈥淕raphene Q-switched distributed feedback fiber lasers with narrow linewidth approaching the transform limit鈥, Opt. Express 25, 8202 (2017).

  9. J. Lim, A. A. Savchenkov, A. B. Matsko, S.-W. Huang, et al., 鈥淢icroresonator-stabilized extended cavity diode laser for supercavity frequency stabilization鈥, Opt. Lett. 42, 1249 (2017).

2016.

  1. A. B. Matsko, A. A. Savchenkov, S.-W. Huang, et al., 鈥淐lustered frequency comb鈥, Opt. Lett. 41, 5102 (2016).

  2. H. Zhou, M. L. Liao, S.-W. Huang, et al., 鈥淪ix-wave mixing induced by free-carrier plasma in silicon nanowire waveguides鈥, Laser Photon. Rev. 10, 1054 (2016).

  3. S.-W. Huang, J. Yang, M. Yu, et al., 鈥淎 broadband chip-scale optical frequency synthesizer at 2.7脳10-16 relative uncertainty鈥, Science Adv. 2, e1501489 (2016).

  4. J. Lim, S.-W. Huang, A. Kumar, et al., 鈥淪tabilized chip-scale Kerr frequency comb via a high-Q reference photonic microresonator鈥, Opt. Lett. 41, 3706 (2016).

  5. S.-W. Huang, H. Liu, J. Yang, et al., 鈥淪mooth and flat phase-locked Kerr frequency comb generation by higher order mode suppression鈥, Sci. Rep. 6, 26255 (2016). 聽

2015.

  1. H. Zhou, S.-W. Huang, Y. Dong, et al., 鈥淪tability and intrinsic fluctuations of dissipative cavity solitons in Kerr frequency microcombs鈥, IEEE Photonics Journal 7, 3200113 (2015).

  2. S.-W. Huang, J. Yang, J. Lim, et al., 鈥淎 low-phase-noise 18 GHz Kerr frequency microcomb phase-locked over 65 THz鈥, Sci. Rep. 5, 13355 (2015).

  3. S.-W. Huang, H. Zhou, J. Yang, et al., 鈥淢ode-locked ultrashort pulse generation from on-chip normal dispersion microresonators鈥, Phys. Rev. Lett. 114, 053901 (2015).

  4. (鈥) C. Manzoni, O. D. M眉cke, G. Cirmi, S. Fang, J. Moses, S.-W. Huang, et al., 鈥淐oherent pulse synthesis: towards sub-cycle optical waveforms鈥, Laser Photon. Rev. 9, 129 (2015).

  5. (鈥) W. R. Huang, S.-W. Huang, E. Granados, et al., 鈥淗ighly efficient terahertz pulse generation by optical rectification in cryogenically cooled lithium niobate鈥, J. Mod. Opt. 62, 1486 (2015, special issue on Physics with Strong THz Fields).

2014.

  1. X. Luan, Y. Huang, Y. Li, J. F. McMillan, J. Zheng, S.-W. Huang, et al., 鈥淎n integrated low phase noise radiation-pressure-driven optomechanical oscillator chipset鈥, Sci. Rep. 4, 6842 (2014).

2013.

  1. H. Suchowski, P. R. Krogen, S.-W. Huang, et al., 鈥淥ctave-spanning coherent mid-IR generation via adiabatic difference frequency conversion鈥, Opt. Express. 21, 28892 (2013, special issue on Nonlinear Optics).

  2. C.-J. Lai, G. Cirmi, K.-H. Hong, J. Moses, S.-W. Huang, et al., 鈥淲avelength Scaling of High Harmonic Generation Close to the Multiphoton Ionization Regime鈥, Phys. Rev. Lett. 111, 073901 (2013).

  3. S.-W. Huang, E. Granados, W.R. Huang, et al., 鈥淗igh conversion efficiency, high energy THz pulses by optical rectification in cryogenically cooled lithium niobate鈥, Opt. Lett. 38, 796 (2013).

2012.

  1. H.-W Chen, J.K. Lim, S.-W. Huang, et al., 鈥淥ptimization of femtosecond Yb-doped fiber amplifiers for high-quality pulse compression鈥, Opt. Express 20, 28672 (2012).

  2. K.-H. Hong, C.-J. Lai, V.-M. Gkortsas, S.-W. Huang, et al., 鈥淗igh-order harmonic generation in Xe, Kr, and Ar driven by a 2.1-渭m source: high-order harmonic spectroscopy under macroscopic effects鈥, Phys. Rev. A, 86, 043412 (2012).

  3. G. Cirmi, C.-J. Lai, E. Granados, S.-W. Huang, et al., 鈥淐ut-off scaling of high-harmonic generation driven by a femtosecond visible optical parametric amplifier鈥, J. Phys. B: At. Mol. Opt. Phys. 45, 205601 (2012).

  4. S.-W. Huang, J. Moses, and F.X. K盲rtner, 鈥淏roadband non-collinear optical parametric amplification without angularly dispersed idler鈥, Opt. Lett. 37, 2796 (2012).

  5. C. Manzoni, S.-W. Huang, G. Cirmi, et al., 鈥淐oherent synthesis of ultra-broadband optical parametric amplifiers鈥, Opt. Lett., 37, 1880 (2012).

  6. (鈥) Y. Chen, S.-W. Huang*, C. Zhou, et al., 鈥淚mproved Detection Sensitivity of Line- Scanning Optical Coherence Microscopy鈥, IEEE J. Sel. Top. Quant. Electron., 18, 1094 (2012). *equal contribution

  7. (鈥) S.-W. Huang, G. Cirmi, J. Moses, et al., 鈥淥ptical waveform synthesizer and its application to high-harmonic generation鈥, J. Phys. B: At. Mol. Opt. Phys. 45, 074009 (2012).

2011.

  1. K.-H. Hong, S.-W. Huang, J. Moses, et al., 鈥淗igh-energy, phase-stable, ultrabroadband kHz OPCPA at 2.1 渭m pumped by a picosecond cryogenic Yb:YAG laser鈥, Opt. Express 19, 15538 (2011).

  2. S.-W. Huang, G. Cirmi, J. Moses, et al., 鈥淗igh-energy pulse synthesis with sub-cycle waveform control for strong-field physics鈥, Nature Photon. 5, 475 (2011).

  3. J. Moses, and S.-W. Huang, 鈥淐onformal profile theory for performance scaling of ultrabroadband optical parametric chirped pulse amplification鈥, J. Opt. Soc. Am. B 28, 812 (2011).

2010.

  1. K.-H. Hong, J. T. Gopinath, D. Rand, A. M. Siddiqui, S.-W. Huang, et. al., 鈥淗igh-energy, kHz-repetition-rate, ps cryogenic Yb:YAG chirped-pulse amplifier鈥, Opt. Lett. 35, 1752 (2010).

  2. E. L. Falcao-Filho, C.-J. Lai, K.-H. Hong, V. M. Gkortsas, S.-W. Huang, et. al., 鈥淪caling of high-order harmonic efficiencies with visible wavelength drivers: A route to efficient extreme ultraviolet sources鈥, Appl. Phys. Lett. 97, 061107 (2010).

  3. A. D. Aguirre, J. Sawinski, S.-W. Huang, et. al., 鈥滺igh speed optical coherence microscopy with autofocus adjustment and a miniaturized endoscopic imaging probe鈥, Opt. Express 18, 4222 (2010).

2009.

  1. J. Moses, C. Manzoni, S.-W. Huang, et. al., 鈥漈emporal optimization of ultrabroadband high-energy OPCPA鈥, Opt. Express 17, 5540 (2009).

  2. J. Moses, S.-W. Huang, K.-H. Hong, et. al., 鈥淗ighly stable ultrabroadband mid-IR optical parametric chirped-pulse amplifier optimized for superfluorescence suppression鈥, Opt. Lett. 34, 1639 (2009 ).

2008.

  1. D. C. Adler, S.-W. Huang, R. Huber, et. al., 鈥漃hotothermal detection of gold nanoparticles using phase-sensitive optical coherence tomography鈥, Opt. Express 16, 4376 (2008).

  2. P. M. Andrews, Y. Chen, S.-W. Huang, et. al., 鈥滺igh-resolution optical coherence tomography imaging of the living kidney鈥, Lab. Invest. 88, 441 (2008).

  3. Y. Chen, A. D. Aguirre, P.-L. Hsiung, S.-W. Huang, et. al., 鈥淓ffects of axial resolution improvement on optical coherence tomography (OCT) imaging of gastrointestinal tissues鈥, Opt. Express 16, 2469 (2008).

  4. W.-J. Chen, Z.-M. Hsieh, S.-W. Huang, et. al., 鈥淪ub-single-cycle optical pulse train with constant carrier envelope phase鈥, Phys. Rev. Lett. 100, 163906 (2008).

2007.

  1. S.-W. Huang, A. D. Aguirre, R. A. Huber, et. al., 鈥淪wept source optical coherence microscopy using a Fourier domain mode-locked laser鈥, Opt. Express 15, 6210 (2007).

  2. Y. Chen, S.-W. Huang, A. D. Aguirre, et. al., 鈥淗igh-resolution line-scanning optical coherence microscopy鈥, Opt. Lett. 32, 1971 (2007).

  3. Y. Chen, A. D. Aguirre, P.-L. Hsiung, et. al., 鈥漊ltrahigh resolution optical coherence tomography of Barrett's esophagus: preliminary descriptive clinical study correlating images with histology鈥, Endoscopy 39, 599 (2007).

  4. H. Mashimo, Y. Chen, S.-W. Huang, et. al., 鈥淓ndoscopic optical coherence tomography reveals Barrett's underneath squarnous neo-epithelium after radiofrequency ablation鈥, Gastroenterology 132, A96 (2007).

2006.

  1. S.-W. Huang, W.-J. Chen, and A.-H. Kung, 鈥淰ibrational molecular modulation in hydrogen鈥, Phys. Rev. A 74, 063825 (2006).

2004.

  1. S.-W. Huang, H.-Y. Mong, and C.-H. Lee, 鈥淪uper-resolution bright-field nanometer topographic optical microscopy based on contrast鈥, Micros. Res. Tech. 65, 180 (2004).