Chinese Journal of Lasers, Volume. 49, Issue 1, 0101018(2022)
Broadband Mid-Infrared Light Based on Difference Frequency Generators
[1] Schliesser A, Picqué N, Hänsch T W. Mid-infrared frequency combs[J]. Nature Photonics, 6, 440-449(2012).
[2] Junaid S, Tomko J, Semtsiv M P et al. Mid-infrared upconversion based hyperspectral imaging[J]. Optics Express, 26, 2203-2211(2018).
[3] Badon A, Li D, Lerosey G et al. Smart optical coherence tomography for ultra-deep imaging through highly scattering media[J]. Science Advances, 2, e1600370(2016).
[4] Sugawara S, Nakayama Y, Taniguchi H et al. Wide-field mid-infrared hyperspectral imaging of adhesives using a bolometer camera[J]. Scientific Reports, 7, 12395(2017).
[5] Huth F, Govyadinov A, Amarie S et al. Nano-FTIR absorption spectroscopy of molecular fingerprints at 20 nm spatial resolution[J]. Nano Letters, 12, 3973-3978(2012).
[6] Timmers H, Kowligy A, Lind A et al. Molecular fingerprinting with bright, broadband infrared frequency combs[J]. Optica, 5, 727-732(2018).
[7] Liang H K, Krogen P, Wang Z et al. High-energy mid-infrared sub-cycle pulse synthesis from a parametric amplifier[J]. Nature Communications, 8, 141(2017).
[8] Ning C X, Zhang Z W. Cavity-length detuning of mid-infrared femtosecond doubly resonant optical parametric oscillators(Invited)[J]. Infrared and Laser Engineering, 50, 20210341(2021).
[9] Hu M L, Wang J, Fan J T. Research progress on fiber laser-pumped femtosecond optical parametric oscillators[J]. Chinese Journal of Lasers, 48, 1901001(2021).
[10] Liu Y, Cao Q, Diao X C et al. Longwave mid-IR femtosecond pulse sources driven by ultrafast fiber lasers(Invited)[J]. Infrared and Laser Engineering, 50, 20210368(2021).
[11] Jin L, Yamanaka M, Sonnenschein V et al. Highly coherent tunable mid-infrared frequency comb pumped by supercontinuum at 1 μm[J]. Applied Physics Express, 10, 012503(2017).
[12] Neely T W, Johnson T A, Diddams S A. High-power broadband laser source tunable from 3.0 μm to 4.4 μm based on a femtosecond Yb: fiber oscillator[J]. Optics Letters, 36, 4020-4022(2011).
[13] Steinle T, Mörz F, Steinmann A et al. Ultra-stable high average power femtosecond laser system tunable from 1.33 μm to 20 μm[J]. Optics Letters, 41, 4863-4866(2016).
[14] Maser D L, Ycas G, Depetri W I et al. Coherent frequency combs for spectroscopy across the 35 μm region[J]. Applied Physics B, 123, 1-9(2017).
[15] Zhou G, Cao Q, Kärtner F X et al. Energy scalable, offset-free ultrafast mid-infrared source harnessing self-phase-modulation-enabled spectral selection[J]. Optics Letters, 43, 2953-2956(2018).
[16] Wang Q, Zhang J, Kessel A et al. Broadband mid-infrared coverage (217 μm) with few-cycle pulses via cascaded parametric processes[J]. Optics Letters, 44, 2566-2569(2019).
[17] Liu K, Liang H K, Qu S Z et al. High-energy mid-infrared intrapulse difference-frequency generation with 5.3% conversion efficiency driven at 3 μm[J]. Optics Express, 27, 37706-37713(2019).
[18] Elu U, Maidment L, Vamos L et al. Seven-octave high-brightness and carrier-envelope-phase-stable light source[J]. Nature Photonics, 15, 277-280(2021).
[19] Ycas G, Giorgetta F R, Baumann E et al. High-coherence mid-infrared dual-comb spectroscopy spanning 2.6 μm to 5.2 μm[J]. Nature Photonics, 12, 202-208(2018).
[20] Yao Y, Knox W H. Difference frequency generation of femtosecond mid infrared pulses employing intense Stokes pulses excitation in a photonic crystal fiber[J]. Optics Express, 20, 25275-25283(2012).
[21] Cruz F C, Maser D L, Johnson T et al. Mid-infrared optical frequency combs based on difference frequency generation for molecular spectroscopy[J]. Optics Express, 23, 26814-26824(2015).
[22] Meek S A, Poisson A, Guelachvili G et al. Fourier transform spectroscopy around 3 μm with a broad difference frequency comb[J]. Applied Physics B, 114, 573-578(2014).
[23] Feng X, Shi J Q, Liu P et al. Broadband mid-infrared coherent light source from fiber-laser-pumped difference frequency generators based on cascaded crystals[J]. Optics Express, 28, 14310-14318(2020).
[24] Feng X, Liu F, Ning C X et al. Broadband mid-IR light sources from difference frequency generators based on a 2-mm-long aperiodically-poled lithium-niobate crystal[J]. IEEE Photonics Journal, 13, 1-5(2021).
[25] Cerullo G, de Silvestri S. Ultrafast optical parametric amplifiers[J]. Review of Scientific Instruments, 74, 1-18(2003).
[26] Zhu F, Hundertmark H, Kolomenskii A A et al. High-power mid-infrared frequency comb source based on a femtosecond Er: fiber oscillator[J]. Optics Letters, 38, 2360-2362(2013).
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Xi Feng, Zhaowei Zhang. Broadband Mid-Infrared Light Based on Difference Frequency Generators[J]. Chinese Journal of Lasers, 2022, 49(1): 0101018
Category: laser devices and laser physics
Received: Aug. 31, 2021
Accepted: Sep. 30, 2021
Published Online: Dec. 1, 2021
The Author Email: Zhang Zhaowei (zhangzhaowei@hust.edu.cn)