Casimir self-assembly: A platform for measuring nanoscale surface interactions in liquids
Journal article, 2025
self-assembly
optical microcavities
Casimir effect
thermal fluctuations
interaction potential
Author
Michaela Hosková
Chalmers, Physics, Nano and Biophysics
Brno University of Technology
Oleg Kotov
Chalmers, Physics, Nano and Biophysics
Betül Kücüköz
Chalmers, Physics, Nano and Biophysics
C. J. Murphy
University of Illinois
Timur Shegai
Chalmers, Physics, Nano and Biophysics
Proceedings of the National Academy of Sciences of the United States of America
0027-8424 (ISSN) 1091-6490 (eISSN)
Vol. 122 31 e2505144122-Tunable Optomechanical Microcavities with Nanofluidic Access for Photochemistry under Confinement
Swedish Research Council (VR) (2024-00545), 2025-01-01 -- 2030-12-31.
Plasmon-exciton coupling at the attosecond-subnanometer scale: Tailoring strong light-matter interactions at room temperature
Knut and Alice Wallenberg Foundation (2019.0140), 2020-07-01 -- 2025-06-30.
Tunable optical resonators and metamaterials through Casimir self-assembly
Swedish Research Council (VR) (2022-03347), 2023-01-01 -- 2026-12-31.
Areas of Advance
Nanoscience and Nanotechnology
Subject Categories (SSIF 2025)
Nano-technology
Condensed Matter Physics
Physical Chemistry
Infrastructure
Myfab (incl. Nanofabrication Laboratory)
DOI
10.1073/pnas.2505144122
PubMed
40748961