7 Micro-hole Arrays and Net-like Structure Fabrication …
245
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50. S. Baheri, S. P. Alavi Tabrizi, B.A. Jubran, Film cooling effectiveness from trenched shaped
and compound holes. Heat and Mass Transfer 44(8), 989–998 (2008)
51. Z. Fei, X. Hu, H.W. Choi, S. Wang, D. Farson, L.J. Lee, Micronozzle array enhanced sandwich
electroporation of embryonic stem cells. Anal. Chem. 82(1), 353–358 (2010)
52. G. Tang, J. Wei, W. Zhou, R. Fan, Wu. Mingyu, Xu. Xiaofeng, Multi-hole plastic optical fiber
force sensor based on femtosecond laser micromachining. Chin. Opt. Lett. 12(9), 090604–
090608 (2014)
53. L. Jiang, L. Zhao, S. Wang, J. Yang, H. Xiao, Femtosecond laser fabricated all-optical fiber
sensors with ultrahigh refractive index sensitivity: modeling and experiment. Opt. Exp. 19(18),
17591–17598 (2011)
54. R. An, M.D. Hoffman, M.A. Donoghue, A.J. Hunt, S.C. Jacobson, Water-assisted femtosecond
laser machining of electrospray nozzles on glass microfluidic devices. Opt. Exp. 16(19), 15206–
15211 (2008)
55. K. Sugioka, Ya. Cheng, Fabrication of 3d microfluidic structures inside glass by femtosecond
laser micromachining. Appl. Phys. A 114(1), 215–221 (2013)
56. E.H. Lundgren, A.C. Forsman, M.L. Hoppe, K.A. Moreno, A. Nikroo, Fabrication of pressurized 2 mm beryllium targets for ICF experiments. Fusion Sci. Technol. 51(4), 576–580
(2007)
57. Y. Cheng, H.L. Tsai, K. Sugioka, K. Midorikawa, Fabrication of 3d microoptical lenses in
photosensitive glass using femtosecond laser micromachining. Appl. Phys. A 85(1), 11–14
(2006)
58. Y.-L. Zhang, Q.-D. Chen, H. Xia, H.-B. Sun, Designable 3d nanofabrication by femtosecond
laser direct writing. Nano Today 5(5), 435–448 (2010)
59. T. Wang, Du. Kai, Z. He, X. He, Development of target fabrication for laser-driven inertial
confinement fusion at research center of laser fusion. High Power Laser Sci. Eng. 5, e5 (2017)
60. J.A. Paisner, E.M. Campbell, W.J. Hogan, The national ignition facility project. Fusion Technol.
26(3), 755–766 (1994)
61. X. Fan, I.M. White, Optofluidic microsystems for chemical and biological analysis. Nature
Photon. 5(10), 591–597 (2011)
62. D. Qin, Y. Xia, J.A. Rogers, R.J. Jackman, X.M. Zhao, G.M. Whitesides, Microsystem
technology in chemistry and life science. Top. Curr. Chem. 194, 1–20 (1999)
63. D.B. Weibel, G.M. Whitesides, Applications of microfluidics in chemical biology. Curr. Opin.
Chem. Biol. 10(6), 584–591 (2006)
64. A. Arora, G. Simone, G.B. Salieb-Beugelaar, J.T. Kim, A. Manz, Latest developments in micro
total analysis systems. Anal. Chem. 82(12), 4830–4847 (2010)
65. Li. Hai-Hua, C. Jian, W. Qing-Kang, Research of photolithography technology based on surface
plasmon. Chin. Phys. B 19(11), 114203 (2010)
66. M.S. Giridhar, K. Seong, A. Schülzgen, P. Khulbe, N. Peyghambarian, M. Mansuripur,
Femtosecond pulsed laser micromachining of glass substrates with application to microfluidic
devices. Appl. Opt. 43(23), 4584–4589 (2004)
67. R.R. Gattass, E. Mazur, Femtosecond laser micromachining in transparent materials. Nat.
Photon. 2(4), 219–225 (2008)
68. Xu. Bin-Bin, Y.-L. Zhang, H. Xia, W.-F. Dong, H. Ding, H.-B. Sun, Fabrication and multifunction integration of microfluidic chips by femtosecond laser direct writing. Lab Chip 13(9),
1677–1690 (2013)
69. W. Hellmich, C. Pelargus, K. Leffhalm, A. Ros, D. Anselmetti, Single cell manipulation,
analytics, and label-free protein detection in microfluidic devices for systems nanobiology.
Electrophoresis 26(19), 3689–3696 (2005)
70. D.V. Vezenov, B.T. Mayers, R.S. Conroy, G.M. Whitesides, P.T. Snee, Y. Chan, D.G. Nocera,
M.G. Bawendi, A low-threshold, high-efficiency microfluidic waveguide laser. J. Am. Chem.
Soc. 127(25), 8952–8953 (2005)
245
49. M. Gleiche, L.F. Chi, H. Fuchs, Nanoscopic channel lattices with controlled anisotropic wetting.
Nature 403(6766), 173–175 (2000)
50. S. Baheri, S. P. Alavi Tabrizi, B.A. Jubran, Film cooling effectiveness from trenched shaped
and compound holes. Heat and Mass Transfer 44(8), 989–998 (2008)
51. Z. Fei, X. Hu, H.W. Choi, S. Wang, D. Farson, L.J. Lee, Micronozzle array enhanced sandwich
electroporation of embryonic stem cells. Anal. Chem. 82(1), 353–358 (2010)
52. G. Tang, J. Wei, W. Zhou, R. Fan, Wu. Mingyu, Xu. Xiaofeng, Multi-hole plastic optical fiber
force sensor based on femtosecond laser micromachining. Chin. Opt. Lett. 12(9), 090604–
090608 (2014)
53. L. Jiang, L. Zhao, S. Wang, J. Yang, H. Xiao, Femtosecond laser fabricated all-optical fiber
sensors with ultrahigh refractive index sensitivity: modeling and experiment. Opt. Exp. 19(18),
17591–17598 (2011)
54. R. An, M.D. Hoffman, M.A. Donoghue, A.J. Hunt, S.C. Jacobson, Water-assisted femtosecond
laser machining of electrospray nozzles on glass microfluidic devices. Opt. Exp. 16(19), 15206–
15211 (2008)
55. K. Sugioka, Ya. Cheng, Fabrication of 3d microfluidic structures inside glass by femtosecond
laser micromachining. Appl. Phys. A 114(1), 215–221 (2013)
56. E.H. Lundgren, A.C. Forsman, M.L. Hoppe, K.A. Moreno, A. Nikroo, Fabrication of pressurized 2 mm beryllium targets for ICF experiments. Fusion Sci. Technol. 51(4), 576–580
(2007)
57. Y. Cheng, H.L. Tsai, K. Sugioka, K. Midorikawa, Fabrication of 3d microoptical lenses in
photosensitive glass using femtosecond laser micromachining. Appl. Phys. A 85(1), 11–14
(2006)
58. Y.-L. Zhang, Q.-D. Chen, H. Xia, H.-B. Sun, Designable 3d nanofabrication by femtosecond
laser direct writing. Nano Today 5(5), 435–448 (2010)
59. T. Wang, Du. Kai, Z. He, X. He, Development of target fabrication for laser-driven inertial
confinement fusion at research center of laser fusion. High Power Laser Sci. Eng. 5, e5 (2017)
60. J.A. Paisner, E.M. Campbell, W.J. Hogan, The national ignition facility project. Fusion Technol.
26(3), 755–766 (1994)
61. X. Fan, I.M. White, Optofluidic microsystems for chemical and biological analysis. Nature
Photon. 5(10), 591–597 (2011)
62. D. Qin, Y. Xia, J.A. Rogers, R.J. Jackman, X.M. Zhao, G.M. Whitesides, Microsystem
technology in chemistry and life science. Top. Curr. Chem. 194, 1–20 (1999)
63. D.B. Weibel, G.M. Whitesides, Applications of microfluidics in chemical biology. Curr. Opin.
Chem. Biol. 10(6), 584–591 (2006)
64. A. Arora, G. Simone, G.B. Salieb-Beugelaar, J.T. Kim, A. Manz, Latest developments in micro
total analysis systems. Anal. Chem. 82(12), 4830–4847 (2010)
65. Li. Hai-Hua, C. Jian, W. Qing-Kang, Research of photolithography technology based on surface
plasmon. Chin. Phys. B 19(11), 114203 (2010)
66. M.S. Giridhar, K. Seong, A. Schülzgen, P. Khulbe, N. Peyghambarian, M. Mansuripur,
Femtosecond pulsed laser micromachining of glass substrates with application to microfluidic
devices. Appl. Opt. 43(23), 4584–4589 (2004)
67. R.R. Gattass, E. Mazur, Femtosecond laser micromachining in transparent materials. Nat.
Photon. 2(4), 219–225 (2008)
68. Xu. Bin-Bin, Y.-L. Zhang, H. Xia, W.-F. Dong, H. Ding, H.-B. Sun, Fabrication and multifunction integration of microfluidic chips by femtosecond laser direct writing. Lab Chip 13(9),
1677–1690 (2013)
69. W. Hellmich, C. Pelargus, K. Leffhalm, A. Ros, D. Anselmetti, Single cell manipulation,
analytics, and label-free protein detection in microfluidic devices for systems nanobiology.
Electrophoresis 26(19), 3689–3696 (2005)
70. D.V. Vezenov, B.T. Mayers, R.S. Conroy, G.M. Whitesides, P.T. Snee, Y. Chan, D.G. Nocera,
M.G. Bawendi, A low-threshold, high-efficiency microfluidic waveguide laser. J. Am. Chem.
Soc. 127(25), 8952–8953 (2005)
