Geometry-induced electrostatic trapping of nanometric objects in a fluid.
The ability to trap an object-whether a single atom or a macroscopic entity-affects fields as diverse as quantum optics, soft condensed-matter physics, biophysics and clinical medicine. Many sophisticated methodologies have been developed to counter the randomizing effect of Brownian motion in solut...
المؤلفون الرئيسيون: | Krishnan, M, Mojarad, N, Kukura, P, Sandoghdar, V |
---|---|
التنسيق: | Journal article |
اللغة: | English |
منشور في: |
2010
|
مواد مشابهة
-
High Stability and Low Power Nanometric Bio-Objects Trapping through Dielectric–Plasmonic Hybrid Nanobowtie
حسب: Paola Colapietro, وآخرون
منشور في: (2024-08-01) -
Electrostatic traps for dipolar excitons
حسب: Rapaport, R, وآخرون
منشور في: (2005) -
Label-Free, All-Optical Detection, Imaging and Nanometric Tracking of Single Proteins
حسب: Arroyo, J, وآخرون
منشور في: (2014) -
Externally Tunable, Low Power Electrostatic Control of Cell Adhesion with Nanometric High‐k Dielectric Films
حسب: Leon, Victor J., وآخرون
منشور في: (2024) -
Analytical study of electrostatic ion beam traps
حسب: Alexandre Vallette, وآخرون
منشور في: (2010-11-01)