- 飞秒激光频率梳绝对距离测量技术
- 宋有建编著
- 432字
- 2022-05-06 20:15:35
参考文献
[1]王清月.飞秒激光在前沿技术中的应用[M].北京: 国防工业出版社,2015.
[2]张志刚.飞秒激光技术(第二版)[M].北京: 科学出版社,2017.
[3]Fermann M E,Hartl I.Ultrafast fiber laser technology[J].IEEE J.Sel.Top.Quantum Electron,2016,15: 191-206.
[4]Kim J,Song Y.Ultralow-noise mode-locked fiber lasers and frequency combs: principles,status,and applications[J].Advances in Optics and Photonics,2016,8(3): 465-540.
[5]Lezius M,Wilken T,Deutsch C,et al.Space-borne frequency comb metrology[J].Optica,2016,3(12): 1381-1387.
[6]Fu W,Wright L G,Sidorenko P,et al.Several new directions for ultrafast fiber lasers[Invited].Optics Express,2018,26(8): 9432-9463.
[7]Kurita T,Yoshida H,Kawashima T,et al.Generation of sub-7-cycle optical pulses from a mode-locked ytterbium-doped single-mode fiber oscillator pumped by polarization-combined 915 nm laser diodes[J].Opt.Lett,2012,37(19),3972-3974.
[8]Ma D,Cai Y,Zhou C,et al.37.4 fs pulse generation in an Er:fiber laser at a 225 MHz repetition rate[J].Opt.Lett,2010,35(17),2858-2860.
[9]Ilday F,Buckley J R,Clark W G,et al.Self-Similar Evolution of Parabolic Pulses in a Laser[J].Phys.Rev.Lett,2004,92(21): 213902.
[10]Nie B,Pestov D,Wise F W,et al.Generation of 42 fs and 10 nJ pulses from a fiber laser with self-similar evolution in the gain segment[J].Optics Express,2011,19(13): 12074-12080.
[11]Chong A,Buckley J,Renninger W,et al.All-normal-dispersion femtosecond fiber laser[J].Optics Express,2006,14 (21): 10095-10100.
[12]Grelu P,Akhmediev N.Dissipative solitons for mode-locked lasers[J].Nat.Photon,2012,6,84-92.
[13]Shi H,Song Y,Li R,et al.Review of low timing jitter mode-locked fiber lasers and applications in dual-comb absolute distance measurement[J].Nanotechnology and Precision Engineering,2018,1(4): 205-217.
[14]Dudley J M,Genty G,Coen S.Supercontinuum generation in photonic crystal fiber[J].Rev.Mod.Phys.2006,78:1135-1184.
[15]Hall J.Nobel Lecture: Defining and measuring optical frequencies[J].Rev.Mod.Phys.,2006,78(4): 1279-1295.
[16]Hänsch T W.Nobel Lecture: Passion for precision[J].Rev.Mod.Phys,2006,78(4): 1297-1309.
[17]Gaeta A L,Lipson M,Kippenberg T J.Photonic-chip-based frequency combs[J].Nat.Photon,2019,13:158-169.
[18]Telle H R,Steinmeyer G,Dunlop A E,et al.Carrier-envelope offset phase control: A novel concept for absolute optical frequency measurement and ultrashort pulse generation[J].App.Phys.B 1999,69: 327-332.
[19]Droste S,Ycas G,Washburn B R,et al.Optical Frequency Comb Generation based on Erbium Fiber Lasers[J].Nanophotonics,2016,5 (2): 196-213.
[20]Coddington I,Swann W C,Nenadovic L,et al.Rapid and precise absolute distance measurements at long range[J].Nature Photonics,2009,3(6): 351-356.
[21]Parriaux A,Hammani K,Millot G.Electro-optic frequency combs[J].Advances in Optics and Photonics,2020,12(1): 223-287.
[22]Carlson D R,Hickstein D D,Zhang W,et al.Ultrafast electro-optic light with subcycle control [J].Science,2018,361(6409): 1358-1362.
[23]Vahala K J.Optical microcavities [J].Nature,2003,424(6950):839-846 .
[24]Del’Haye P,Schliesser A,Arcizet O,et al,Optical frequency comb generation from a monolithic microresonator[J].Nature,2007,450(7173): 1214-1217.
[25]Gaeta A L,Lipson M,Kippenberg T J.Photonic-chip-based frequency combs[J].Nature Photonics,2019,13(3): 158-169.
[26]Kippenberg T J,Holzwarth R,Diddams S,A.Microresonator-Based Optical Frequency Combs[J].Science,2011,332(6029): 555-559.
[27]Herr T,Brasch V,Jost J D,et al.Temporal solitons in optical microresonators[J].Nature Photonics,2014,8(2): 145-152.
[28]Trocha P,Karpov M Ganin D,et al.Ultrafast optical ranging using microresonator soliton frequency combs[J].Science,2018,359(6378): 887-891.
[29]Brasch V,Lucas E,Jost J D,et al.Self-referenced photonic chip soliton Kerr frequency comb[J].Light: Science and Applications,2017,6: e16202.