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Items: 18

1.

Mid-infrared dual-comb spectroscopy with electro-optic modulators.

Yan M, Luo PL, Iwakuni K, Millot G, Hänsch TW, Picqué N.

Light Sci Appl. 2017 Oct 20;6(10):e17076. doi: 10.1038/lsa.2017.76. eCollection 2017 Oct.

2.

A phase-stable dual-comb interferometer.

Chen Z, Yan M, Hänsch TW, Picqué N.

Nat Commun. 2018 Aug 2;9(1):3035. doi: 10.1038/s41467-018-05509-6.

3.

Silicon-chip-based mid-infrared dual-comb spectroscopy.

Yu M, Okawachi Y, Griffith AG, Picqué N, Lipson M, Gaeta AL.

Nat Commun. 2018 May 14;9(1):1869. doi: 10.1038/s41467-018-04350-1.

4.

Roadmap on optical sensors.

Ferreira MFS, Castro-Camus E, Ottaway DJ, López-Higuera JM, Feng X, Jin W, Jeong Y, Picqué N, Tong L, Reinhard BM, Pellegrino PM, Méndez A, Diem M, Vollmer F, Quan Q.

J Opt. 2017 Aug;19(8). pii: 083001. doi: 10.1088/2040-8986/aa7419. Epub 2017 Jul 24.

5.

Doppler-free Fourier transform spectroscopy.

Meek SA, Hipke A, Guelachvili G, Hänsch TW, Picqué N.

Opt Lett. 2018 Jan 1;43(1):162-165. doi: 10.1364/OL.43.000162.

PMID:
29328222
6.

Dual-comb coherent Raman spectroscopy with lasers of 1-GHz pulse repetition frequency.

Mohler KJ, Bohn BJ, Yan M, Mélen G, Hänsch TW, Picqué N.

Opt Lett. 2017 Jan 15;42(2):318-321. doi: 10.1364/OL.42.000318.

PMID:
28081102
7.

Few-cycle, broadband, mid-infrared optical parametric oscillator pumped by a 20-fs Ti:sapphire laser.

Chaitanya Kumar S, Esteban-Martin A, Ideguchi T, Yan M, Holzner S, Hänsch TW, Picqué N, Ebrahim-Zadeh M.

Laser Photon Rev. 2014 Sep;8(5):L86-L91. Epub 2014 Jun 17.

8.

An octave-spanning mid-infrared frequency comb generated in a silicon nanophotonic wire waveguide.

Kuyken B, Ideguchi T, Holzner S, Yan M, Hänsch TW, Van Campenhout J, Verheyen P, Coen S, Leo F, Baets R, Roelkens G, Picqué N.

Nat Commun. 2015 Feb 20;6:6310. doi: 10.1038/ncomms7310.

9.

Adaptive real-time dual-comb spectroscopy.

Ideguchi T, Poisson A, Guelachvili G, Picqué N, Hänsch TW.

Nat Commun. 2014 Feb 27;5:3375. doi: 10.1038/ncomms4375.

10.

Coherent Raman spectro-imaging with laser frequency combs.

Ideguchi T, Holzner S, Bernhardt B, Guelachvili G, Picqué N, Hänsch TW.

Nature. 2013 Oct 17;502(7471):355-8. doi: 10.1038/nature12607.

PMID:
24132293
11.

Cr : YAG chirped-pulse oscillator.

Sorokin E, Kalashnikov VL, Mandon J, Guelachvili G, Picqué N, Sorokina IT.

New J Phys. 2008 Aug;10. pii: 083022.

12.

Supercontinua for high-resolution absorption multiplex infrared spectroscopy.

Mandon J, Sorokin E, Sorokina IT, Guelachvili G, Picqué N.

Opt Lett. 2008 Feb 1;33(3):285-7.

13.
14.

Femtosecond laser Fourier transform absorption spectroscopy.

Mandon J, Guelachvili G, Picqué N, Druon F, Georges P.

Opt Lett. 2007 Jun 15;32(12):1677-9.

PMID:
17572744
15.

N(2)O weak lines observed between 3900 and 4050 cm from long path absorption spectra.

Herbin H, Picqué N, Guelachvili G, Sorokin E, Sorokina IT.

J Mol Spectrosc. 2006 Aug;238(2):256-259.

16.

Acetylene weak bands at 2.5 μm from intracavity Cr:ZnSe laser absorption observed with time-resolved Fourier transform spectroscopy.

Girard V, Farrenq R, Sorokin E, Sorokina IT, Guelachvili G, Picqué N.

Chem Phys Lett. 2006 Feb 26;419(4-6):584-588.

17.

Time-resolved Fourier transform intracavity spectroscopy with a Cr2+:ZnSe laser.

Picqué N, Gueye F, Guelachvili G, Sorokin E, Sorokina IT.

Opt Lett. 2005 Dec 15;30(24):3410-2.

18.

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