Roadmap on wavefront shaping and deep imaging in complex media
Publication date
2022-10
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
cc_by
Abstract
The last decade has seen the development of a wide set of tools, such as wavefront shaping, computational or fundamental methods, that allow us to understand and control light propagation in a complex medium, such as biological tissues or multimode fibers. A vibrant and diverse community is now working in this field, which has revolutionized the prospect of diffraction-limited imaging at depth in tissues. This roadmap highlights several key aspects of this fast developing field, and some of the challenges and opportunities ahead.
Keywords
adaptive optics, imaging, mesoscopic physics, microscopy, multimode fibers, scattering, wavefront shaping, Electronic, Optical and Magnetic Materials, Atomic and Molecular Physics, and Optics, Electrical and Electronic Engineering
Citation
Gigan, S, Katz, O, De Aguiar, H B, Andresen, E R, Aubry, A, Bertolotti, J, Bossy, E, Bouchet, D, Brake, J, Brasselet, S, Bromberg, Y, Cao, H, Chaigne, T, Cheng, Z, Choi, W, Čižmár, T, Cui, M, Curtis, V R, Defienne, H, Hofer, M, Horisaki, R, Horstmeyer, R, Ji, N, LaViolette, A K, Mertz, J, Moser, C, Mosk, A P, Pégard, N C, Piestun, R, Popoff, S, Phillips, D B, Psaltis, D, Rahmani, B, Rigneault, H, Rotter, S, Tian, L, Vellekoop, I M, Waller, L, Wang, L, Weber, T, Xiao, S, Xu, C, Yamilov, A, Yang, C & Yılmaz, H 2022, 'Roadmap on wavefront shaping and deep imaging in complex media', JPhys Photonics, vol. 4, no. 4, 042501, pp. 1-73. https://doi.org/10.1088/2515-7647/ac76f9