Dual-comb spectroscopy.

Ian Coddington, Nathan Newbury, William Swann
Author Information
  1. Ian Coddington: National Institute of Standards and Technology, 325 Broadway, Boulder, Colorado 80305, USA.
  2. Nathan Newbury: National Institute of Standards and Technology, 325 Broadway, Boulder, Colorado 80305, USA.
  3. William Swann: National Institute of Standards and Technology, 325 Broadway, Boulder, Colorado 80305, USA.

Abstract

Dual-comb spectroscopy is an emerging new spectroscopic tool that exploits the frequency resolution, frequency accuracy, broad bandwidth, and brightness of frequency combs for ultrahigh-resolution, high-sensitivity broadband spectroscopy. By using two coherent frequency combs, dual-comb spectroscopy allows a sample's spectral response to be measured on a comb tooth-by-tooth basis rapidly and without the size constraints or instrument response limitations of conventional spectrometers. This review describes dual-comb spectroscopy and summarizes the current state of the art. As frequency comb technology progresses, dual-comb spectroscopy will continue to mature and could surpass conventional broadband spectroscopy for a wide range of laboratory and field applications.

Keywords

References

  1. Opt Lett. 2012 Nov 1;37(21):4498-500 [PMID: 23114342]
  2. Nat Commun. 2014 Oct 13;5:5192 [PMID: 25307936]
  3. Opt Express. 2013 May 6;21(9):11141-9 [PMID: 23669971]
  4. Opt Express. 2012 Sep 24;20(20):21932-9 [PMID: 23037343]
  5. Opt Express. 2015 Nov 16;23(23):30557-69 [PMID: 26698533]
  6. Opt Express. 2010 Oct 11;18(21):21861-72 [PMID: 20941086]
  7. Opt Express. 2010 Mar 15;18(6):5974-83 [PMID: 20389617]
  8. Opt Express. 2015 Oct 5;23(20):26814-24 [PMID: 26480192]
  9. Nature. 2013 Oct 17;502(7471):355-8 [PMID: 24132293]
  10. Appl Opt. 2013 Jan 10;52(2):248-55 [PMID: 23314642]
  11. Opt Express. 2010 Jan 18;18(2):1613-7 [PMID: 20173988]
  12. Sci Rep. 2015 Jun 02;5:10786 [PMID: 26035687]
  13. Chemphyschem. 2006 Nov 13;7(11):2242-58 [PMID: 17086589]
  14. Science. 2011 Apr 29;332(6029):555-9 [PMID: 21527707]
  15. Opt Lett. 2014 Oct 1;39(19):5471-4 [PMID: 25360905]
  16. Opt Lett. 2012 Feb 15;37(4):638-40 [PMID: 22344132]
  17. Opt Lett. 2013 Aug 15;38(16):3148-50 [PMID: 24104672]
  18. Phys Rev Lett. 2015 Sep 4;115(10):103901 [PMID: 26382677]
  19. Opt Express. 2008 Jul 7;16(14):10728-35 [PMID: 18607489]
  20. Opt Lett. 2004 Jul 1;29(13):1542-4 [PMID: 15259740]
  21. Sci Rep. 2014 Jan 22;4:3816 [PMID: 24448604]
  22. Nat Commun. 2014 Feb 27;5:3375 [PMID: 24572636]
  23. Opt Express. 2012 Mar 26;20(7):7375-87 [PMID: 22453417]
  24. Annu Rev Anal Chem (Palo Alto Calif). 2010;3:175-205 [PMID: 20636039]
  25. Opt Express. 2015 Aug 10;23(16):21149-58 [PMID: 26367964]
  26. Opt Express. 2015 Dec 28;23(26):33184-93 [PMID: 26831986]
  27. Opt Lett. 2009 Dec 15;34(24):3875-7 [PMID: 20016643]
  28. Opt Express. 2008 Mar 3;16(5):3430-8 [PMID: 18542434]
  29. Opt Lett. 2012 Jan 15;37(2):187-9 [PMID: 22854462]
  30. Opt Express. 2010 Apr 12;18(8):7929-45 [PMID: 20588636]
  31. Sci Rep. 2015 Oct 27;5:15726 [PMID: 26503257]
  32. Opt Lett. 2006 Nov 1;31(21):3179-81 [PMID: 17041674]
  33. Opt Lett. 2002 May 1;27(9):766-8 [PMID: 18007926]
  34. Opt Lett. 2013 Jun 15;38(12):2077-9 [PMID: 23938982]
  35. Opt Express. 2014 Apr 7;22(7):8101-13 [PMID: 24718186]
  36. Opt Express. 2012 Mar 26;20(7):7046-53 [PMID: 22453385]
  37. Phys Rev Lett. 2008 Jan 11;100(1):013902 [PMID: 18232764]
  38. Opt Express. 2012 Jan 30;20(3):3066-75 [PMID: 22330543]
  39. Opt Express. 2006 Nov 13;14(23):11222-33 [PMID: 19529536]
  40. Opt Lett. 2014 Jun 1;39(11):3270-3 [PMID: 24876030]
  41. J Phys Chem Lett. 2014 Jul 3;5(13):2241-6 [PMID: 26279541]
  42. Sci Rep. 2014 May 30;4:5134 [PMID: 24875665]
  43. Opt Express. 2015 Oct 5;23(20):26596-603 [PMID: 26480172]
  44. Opt Lett. 2015 Sep 15;40(18):4226-8 [PMID: 26371902]
  45. Opt Lett. 2009 Jul 15;34(14):2153-5 [PMID: 19823532]
  46. Opt Express. 2013 Mar 25;21(6):7411-8 [PMID: 23546124]
  47. Nature. 2007 Feb 8;445(7128):627-30 [PMID: 17287805]
  48. Opt Lett. 2014 May 1;39(9):2688-90 [PMID: 24784078]
  49. Opt Express. 2005 Oct 31;13(22):9029-38 [PMID: 19498938]
  50. Opt Express. 2010 Jul 19;18(15):15981-9 [PMID: 20720982]
  51. Opt Lett. 2010 May 1;35(9):1395-7 [PMID: 20436581]
  52. Phys Rev Lett. 2015 Apr 24;114(16):163902 [PMID: 25955051]
  53. Opt Lett. 2012 Aug 1;37(15):3285-7 [PMID: 22859160]
  54. Phys Rev Lett. 2007 Dec 31;99(26):263902 [PMID: 18233578]
  55. Opt Express. 2010 Oct 25;18(22):23358-70 [PMID: 21164677]
  56. Opt Express. 2013 Dec 16;21(25):30707-15 [PMID: 24514646]
  57. J Chem Phys. 2012 Apr 21;136(15):154201 [PMID: 22519318]
  58. Opt Lett. 2012 Jul 15;37(14):2928-30 [PMID: 22825181]
  59. Opt Express. 2008 Mar 17;16(6):4347-65 [PMID: 18542532]
  60. Rev Sci Instrum. 2015 Aug;86(8):081301 [PMID: 26329167]
  61. Opt Lett. 2012 Dec 1;37(23):4847-9 [PMID: 23202066]
  62. Opt Express. 2016 Sep 19;24(19):21833-45 [PMID: 27661919]
  63. Opt Express. 2011 Mar 28;19(7):6296-302 [PMID: 21451655]
  64. Rev Sci Instrum. 2015 Oct;86(10):103107 [PMID: 26520940]
  65. Opt Express. 2009 Dec 7;17(25):22847-54 [PMID: 20052210]
  66. Opt Lett. 2010 May 15;35(10):1689-91 [PMID: 20479851]
  67. Opt Express. 2014 Mar 24;22(6):6996-7006 [PMID: 24664048]
  68. Rev Sci Instrum. 2007 Mar;78(3):035107 [PMID: 17411217]
  69. Opt Express. 2015 Mar 9;23(5):5521-31 [PMID: 25836785]
  70. Science. 1983 Oct 21;222(4621):297-302 [PMID: 6623077]

Grants

  1. 9999-NIST/Intramural NIST DOC

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