Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Roadmap for optical tweezers

作者:Giovanni Volpe, Onofrio M. Maragò, Halina H. Rubinsztein-Dunlop, Giuseppe Pesce, Alexander B. Stilgoe, Giorgio Volpe, Georgiy V. Tkachenko, Viet Giang Truong, Síle Nic Chormaic, Fatemeh Kalantarifard, Parviz Elahi, Mikael Käll, Agnese Callegari, Manuel I. Marqués, Antônio A. R. Neves, Wendel L. Moreira, Adriana Fontes, Carlos L. Cesar, Rosalba Saija, A. Saidi, Paul A. Beck, Jörg S. Eismann, Peter Banzer, Thales F. D. Fernandes, Francesco Pedaci, Warwick P. Bowen, Rahul Vaippully, Muruga Lokesh, Basudev Roy, Gregor Thalhammer, Monika Ritsch‐Marte, Laura Pérez García, Alejandro V. Arzola, Isaac Pérez Castillo, Aykut Argun, Till Moritz Muenker, Bart E. Vos, Timo Betz, Ilaria Cristiani, P. Minzioni, Peter John Reece, Fan Wang, David McGloin, Justus Chukwunonso Ndukaife, Romain Quidant, Reece P. Roberts, Cyril Laplane, Thomas Volz, Reuven Gordon, D. Hanstorp, Javier Tello Marmolejo, Graham D. Bruce, Kishan Dholakia, Tongcang Li, Oto Brzobohatý, Stephen H. Simpson, Pavel Zemánek, Félix Ritort, Yael Roichman, Valeriia Bobkova, Raphael Wittkowski, Cornelia Denz, G. V. Pavan Kumar, Antonino Foti, M. G. Donato, Pietro Giuseppe Gucciardi, Lucia Gardini, Giulio Bianchi, Anatolii V. Kashchuk, Marco Capitanio, Lynn Paterson, Philip H. Jones, Kirstine Berg‐Sørensen, Younes Farhangi Barooji, Lene Broeng Oddershede, Pegah Pouladian, Daryl Preece, Caroline B. Adiels, Anna Chiara De Luca, Alessandro Magazzù, David Bronte Ciriza, Maria Antonia Iatì, Grover A. Swartzlander · 发表于:Journal of Physics Photonics · 年份:2023 · DOI:10.1088/2515-7647/acb57b · 被引用次数:157 · 研究领域:Orbital Angular Momentum in Optics、Near-Field Optical Microscopy、Microfluidic and Bio-sensing Technologies

Abstract Optical tweezers are tools made of light that enable contactless pushing, trapping, and manipulation of objects, ranging from atoms to space light sails. Since the pioneering work by Arthur Ashkin in the 1970s, optical tweezers have evolved into sophisticated instruments and have been employed in a broad range of applications in the life sciences, physics, and engineering. These include accurate force and torque measurement at the femtonewton level, microrheology of complex fluids, single micro- and nano-particle spectroscopy, single-cell analysis, and statistical-physics experiments. This roadmap provides insights into current investigations involving optical forces and optical tweezers from their theoretical foundations to designs and setups. It also offers perspectives for applications to a wide range of research fields, from biophysics to space exploration.