Effects of Spherical Aberration on Optical Trapping Forces forRayleigh Particles
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Abstract
The Trapping force on Rayleigh particles in an optical tweezers system with an oil immersion objective is calculated by an electromagnetic model. The results indicate that the stability of particles trapped will be affected by spherical aberration, which is caused by refractive difference between objective oil and water solution, when the specimen manipulated is suspended in a water solution. The trapping force and depth of potential well will decrease and the minimum of laser power for ensuring the stability of particles trapped will increase with the enhancing trapping depth.
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YAO Xin-Cheng, LI Zhao-Lin, GUO Hong-Lian, CHENG Bing-Ying, ZHANG Dao-Zhong. Effects of Spherical Aberration on Optical Trapping Forces forRayleigh Particles[J]. Chin. Phys. Lett., 2001, 18(3): 432-434.
YAO Xin-Cheng, LI Zhao-Lin, GUO Hong-Lian, CHENG Bing-Ying, ZHANG Dao-Zhong. Effects of Spherical Aberration on Optical Trapping Forces forRayleigh Particles[J]. Chin. Phys. Lett., 2001, 18(3): 432-434.
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YAO Xin-Cheng, LI Zhao-Lin, GUO Hong-Lian, CHENG Bing-Ying, ZHANG Dao-Zhong. Effects of Spherical Aberration on Optical Trapping Forces forRayleigh Particles[J]. Chin. Phys. Lett., 2001, 18(3): 432-434.
YAO Xin-Cheng, LI Zhao-Lin, GUO Hong-Lian, CHENG Bing-Ying, ZHANG Dao-Zhong. Effects of Spherical Aberration on Optical Trapping Forces forRayleigh Particles[J]. Chin. Phys. Lett., 2001, 18(3): 432-434.
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