Page 222 - Optofluidics Fundamentals, Devices, and Applications
P. 222

Adaptive Optofluidic Devices     197


                77.  Xiaole Mao, John Robert Waldeisen, Bala Krishna Juluri, and Tony Jun Huang,
                   “Hydrodynamically tunable optofluidic cylindrical microlens,” Lab Chip 7,
                   1303–1308, 2007.
                78.  A. Divetia, Tsung-Hsi Hsieh, Jun Zhang, Zhongping Chen, Mark Bachman,
                   and Guann-Pyng Li, “Dynamically focused optical coherence tomography
                   for endoscopic applications,” Appl. Phys. Lett., 86, 103902, 2005.
                79.  L. Dong, Abhishek K. Agarwal, David J. Beebe, and Hongrui Jiang, “Adaptive
                   liquid microlenses activated by stimuli-responsive hydrogels,” Nature 442,
                   551–554, 2006.
                80.  L. Dong and H. Jiang, “pH-adaptive microlenses using pinned liquid-liquid
                   interfaces actuated by pH-responsive hydrogel,” Appl. Phys. Lett., 89, 211120,
                   2006.
                81.  W.S. Wang, J. Fang, “Variable focusing microlens chip for potential sensing
                   applications,” IEEE Sens. J., 7 (1–2), 11–17, 2007.
                82. J.C. Roulet, R. Völkel, H.P. Herzig, E. Verpoorte, N.F. de Rooij, and R. Dändliker,
                   “Microlens systems for fluorescence detection in chemical microsystems,”
                   Opt. Eng., 40, 814–821, 2001.
                83. Jeonggi Seo and Luke P. Lee, “Disposable integrated microfluidics with
                   self-aligned planar microlenses,” Sens. Actuators B Chem., 99 (2–3), 615–622,
                   2004.
                84.  De-Ying Zhang, Victor Lien, Yevgeny Berdichevsky, Jaehyuck Choi, and Yu-
                   Hwa Lo, “Fluidic adaptive lens with high focal length tenability,” Appl. Phys.
                   Lett., 82, 3171, 2003.
                85.  N. Chronis, G. Liu, K.-H. Jeong, and L. Lee, “Tunable liquid-filled microlens
                   array integrated with microfluidic network,” Opt. Express, 11, 2370–2378,
                   2003.
                86.  K.H. Jeong, G. Liu, N. Chronis, and L. Lee, “Tunable microdoublet lens array,”
                   Opt. Express, 12 (11) 2494–2500, 2004.
                87.  J. Chen, W. Wang, J. Fang, and K. Varahramyan, “Variable-focusing microlens
                   with microfluidic chip,” J. Micromech. Microeng., 14, 675–680, 2004.
                88.  H. Ren and S.T. Wu, “Variable-focus liquid lens by changing aperture,” Appl.
                   Phys. Lett., 86, 211107, 2005.
                89.  H. Ren, S.T. Wu, “Variable-focus liquid lens,” Opt. Express, 15 (10), 5931–5936,
                   2007.
                90.  R. Kuwano, T. Tokunaga, Y. Otani, and N. Umeda, “Liquid pressure varifocus
                   lens,” Opt. Rev., 12 (5), 405-408, 2005.
                91.  P.M. Moran, Saman Dharmatilleke, Aik Hau Khaw, Kok Wei Tan, Mei Lin
                   Chan, and Isabel Rodriguez, “Fluidic lenses with variable focal length,” Appl.
                   Phys. Lett., 88, 041120, 2006.
                92.  Sindy K.Y. Tang, Claudiu A. Stan, and George M. Whitesides, “Dynamically
                   reconfigurable liquid-core liquid-cladding lens in a microfluidic channel,”
                   Lab Chip, 8, 395–401, 2008.
                93.  C.A. López, C.C. Lee, and A.H. Hirsa, “Electrochemically activated adaptive
                   liquid lens,” Appl. Phys. Lett., 87, 134102, 2005.
                94.  Dorrer C, Prucker O, and Ruhe J, “Swellable surface-attached polymer mic-
                   rolenses with tunable focal length,” Adv. Mater., 19 (3), 456, 2007.
                95.  S.N. Lee, H.W. Tung, W.C. Chen, and W.L. Fang, “Thermal actuated solid
                   tunable lens,” IEEE Photon. Technol. Lett., 18, 2191–2193, 2006.
                96.  S.Y. Lee, W.C. Chen, H.W. Tung, and W. Fang, “Microlens with tunable astig-
                   matism,” IEEE Photon. Technol. Lett., 19, 18, 2007.
                97.  Han Yang, Yong-Hao Han, Xiang-Wei Zhao, Keiji Nagai, and Zhong-Ze
                   Gu, “Thermal responsive microlens arrays,” Appl. Phys. Lett., 89, 111121,
                   2006.
                98.  Berge, B., “Electrocapillarite et mouillage de films isolants par l’eau”, C. R.
                   Acad. Sci. II, 317, 157, 1993.
                99.  Berge, B., and Peseux, J., “Variable focal lens controlled by an external voltage:
                   an application of electrowetting,” Eur. Phys. J. E, 3, 159–163, 2000.
               100.  A. Casner and J.-P. Delville, “Adaptive lensing driven by the radiation pres-
                   sure of a continuous-wave laser wave upon a near-critical liquid-liquid inter-
                   face,” Opt. Lett. 26, 1418–1420, 2001.
   217   218   219   220   221   222   223   224   225   226   227