激光与光电子学进展, 2008, 45 (11): 35, 网络出版: 2008-11-17   

全息光镊-光镊家族中极具活力的成员 下载: 822次

Holographic Tweezers-The Most Vigorous Member in Optical Tweezers' Family
作者单位
1 中国科学技术大学物理系, 安徽 合肥 230026
2 合肥微尺度物质科学国家实验室, 安徽 合肥 230026
引用该论文

任煜轩, 周金华, 吴建光, 李银妹. 全息光镊-光镊家族中极具活力的成员[J]. 激光与光电子学进展, 2008, 45(11): 35.

Ren Yuxuan, Zhou Jinhua, Wu Jianguang, Li Yinmei. Holographic Tweezers-The Most Vigorous Member in Optical Tweezers' Family[J]. Laser & Optoelectronics Progress, 2008, 45(11): 35.

参考文献

[1] . , Dziedzic J. M., Bjorkholm J. E. et al.. Observation of a single-beam gradient force optical trap for dielectric particles[J]. Opt. Lett., 1986, 11(5): 288-290.

[2] 庄礼辉, 任洪亮, 李银妹. 同步斩波法测量胶体粒子间相互作用势[J]. 应用激光, 2007, 27(2): 132~135

[3] 任洪亮, 庄礼辉, 李银妹. 双光镊测量胶体微粒间相互作用势[J]. 中国激光, 2008, 35(1): 151~155

[4] . C., Grier D. G.. Microscopic measurement of the pair interaction potential of charge-stabilized colloid[J]. Phys. Rev. Lett., 1994, 73(2): 352-355.

[5] . , Ichikawa M., Kimura Y.. Force between colloidal particles in a nematic liquid crystal studied by optical tweezers[J]. Phys. Rev. E, 2008, 77(2): 020703.

[6] . , Ge K., Li Y. et al.. Application of optical tweezers in the research of molecular interaction between lymphocyte function associated antigen-1 and its monoclonal antibody[J]. Cellular & Molecular Immunology, 2007, 4(3): 221-225.

[7] . , Bilyard T., Bai F. et al.. A programmable optical angle clamp for rotary molecular motors[J]. Biophysical Journal, 2007, 93(1): 264-275.

[8] . R., Chemla Y. R., Smith S. B. et al.. Recent advances in optical tweezers[J]. Annu. Rev. Biochem, 2008, 77(11): 205-228.

[9] . R., Chemla Y. R., Izhaky D. et al.. Differential detection of dual traps improves the spatial resolution of optical tweezers[J]. Proc. Natl. Acad. Sci. USA, 2006, 103(24): 9006-9011.

[10] 李银妹, 楼立人. 纳米光镊技术--新兴的纳米生物技术[J]. 激光与光电子学进展, 2003, 40(1): 1~5

[11] 陈洪涛, 李银妹, 楼立人 等. 光镊技术中的纳米位移探测及其测量误差讨论[J]. 中国激光, 2004, 31(6): 729~734

[12] . T., Noom M. C., Wuite G. J.. Bacterial chromatin organization by H-NS protein unravelled using dual DNA manipulation[J]. Nature, 2006, 444(7117): 387-390.

[13] . C., Matteo J. A., Dinsmore A. D. et al.. Entropic attraction and repulsion in binary colloids probed with a line optical tweezer[J]. Phys. Rev. Lett., 1999, 82(21): 4352-4355.

[14] . L., Crocker J. C.. Line optical tweezers instrument for measuring nanoscale interactions and kinetics[J]. Rev. Sci. Instrum., 2006, 77(11): 3702-3710.

[15] . , Mao F., Chai L. et al.. Numerical modeling and theoretical analysis of femtosecond laser tweezers[J]. Opt. & Laser Technol., 2004, 36(8): 635-639.

[16] . A., Greenleaf W. J., Shaevitz J. W. et al.. Direct observation of base-pair stepping by RNA polymerase[J]. Nature, 2005, 438(7067): 460-465.

[17] . W., Liu X. H., Li Y. M. et al.. Isolation of a single rice chromosome by optical micromanipulation[J]. J. Opt. A, 2004, 6(1): 89-93.

[18] . G.. A revolution in optical manipulation[J]. Nature, 2003, 424(6950): 810-816.

[19] . G., Roichman Y.. Holographic optical trapping[J]. Appl. Opt., 2006, 45(5): 880-887.

[20] . R., Grier D. G.. Optical tweezer arrays and optical substrates created with diffractive optics[J]. Rev. Sci. Instr., 1998, 69(5): 1974-1977.

[21] . R., Spalding G. C., Dearing M. T. et al.. Computer-generated holographic optical tweezer arrays[J]. Rev. Sci. Instr., 2001, 72(3): 1810-1816.

[22] . , Sun B., Roichman Y. et al.. Optical forces arising from phase gradients[J]. Phys. Rev. Lett., 2008, 100(1): 013602.

[23] . , Fürhapter S., Bernet S. et al.. Diffractive optical tweezers in the Fresnel regime[J]. Opt. Exp., 2004, 12(10): 2243-2250.

[24] . , Forth S., Simmons C. R. et al.. Nanofabricated quartz cylinders for angular trapping: DNA supercoiling torque detection[J]. Nature Methods, 2007, 4(3): 223-225.

[25] . , Ishigure M., Inaba H. Optical trapping and rotational manipulation of microscopic particles and biological cells using higher-order mode Nd-YAG laser beams[J]. Electron. Lett., 1991, 27(20): 1831.

[26] 陆璇辉, 黄慧琴, 赵承良 等. 涡旋光束和光学涡旋[J]. 激光与光电子学进展, 2008, 45(1): 50~56

[27] . , Mazilu M., Reece P. J. et al.. Optical vortex trap for resonant confinement of metal nanoparticles[J]. Opt. Exp., 2008, 16(7): 4991-4999.

[28] . , Carnicer A., Andilla J. et al.. HoloTrap: Interactive hologram design for multiple dynamic optical trapping[J]. Computer Phys. Comm., 2007, 176: 701-709.

[29] . E., Koss B. A., Grier D. G.. Dynamic holographic optical tweezers[J]. Opt. Comm., 2002, 207(1): 169-175.

[30] . , Maurer C., Schwaighofer A. et al.. Full phase and amplitude control of holographic optical tweezers with high efficiency[J]. Opt. Exp., 2008, 16(7): 4479-4486.

[31] . , Maurer C., Fürhapter S. et al.. Optical tweezers of programmable shape with transverse scattering forces[J]. Opt. Comm., 2008, 281(8): 2207-2212.

[32] . , Garcés-Chávez V., Chávez-Cerda S et al.. Orbital angular momentum of a high-order Bessel light beam[J]. J. Opt. B, 2002, 4: S82-S89.

[33] . E., Grier D. G.. Structure of optical vortices[J]. Phys. Rev. Lett., 2003, 90(13): 133901.

[34] . C., Lang M. J.. Active particle control through silicon using conventional optical trapping techniques[J]. Lab. on a Chip., 2007, 7(12): 1837-1840.

任煜轩, 周金华, 吴建光, 李银妹. 全息光镊-光镊家族中极具活力的成员[J]. 激光与光电子学进展, 2008, 45(11): 35. Ren Yuxuan, Zhou Jinhua, Wu Jianguang, Li Yinmei. Holographic Tweezers-The Most Vigorous Member in Optical Tweezers' Family[J]. Laser & Optoelectronics Progress, 2008, 45(11): 35.

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