On-demand electrostatic coupling of individual precharacterized nano- and microparticles in a segmented Paul trap.
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Summary
A novel versatile method for one-by-one coupling of single nano- and microparticles in a segmented linear Paul trap ideal for fast particle characterization and assembly of two or more preselected particles by electrostatic attraction is presented.
- Type
- article
- Published
- 2015-02-17
- Cited by
- 15
- References
- 39
- Access
- Open access
- OpenAlex
- https://openalex.org/W25688754
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:21010564
Keywords
Heart rate variability, Orthostatic vital signs, Internal medicine, Cardiology, Medicine
References
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- Soft-landing and optical characterization of a preselected single fluorescent particle on a tapered optical fiber.
- Fluorescence enhancement in hot spots of AFM-designed gold nanoparticle sandwiches.
- Nitrogen vacancy center fluorescence from a submicron diamond cluster levitated in a linear quadrupole ion trap
- Controlled coupling of NV defect centers to plasmonic and photonic nanostructures
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Cited by
- Cooling and manipulation of a levitated nanoparticle with an optical fiber trap
- Cooling and Stabilization of Graphene Nanoplatelets in High Vacuum
- Measuring photoluminescence spectra of self-assembly array nanowire of colloidal CdSe quantum dots using scanning near-field optics microscopy
- Ligand exchange procedure for bimetallic magnetic iron-nickel nanocrystals toward biocompatible activities.
- Trapping and manipulation of individual nanoparticles in a planar Paul trap
- Ordered array of Ag semishells on different diameter monolayer polystyrene colloidal crystals: An ultrasensitive and reproducible SERS substrate
- Optical and magnetic measurements of gyroscopically stabilized graphene nanoplatelets levitated in an ion trap
- Dual-trap system to study charged graphene nanoplatelets in high vacuum
- “Flying Plasmons”: Fabry-Pérot Resonances in Levitated Silver Nanowires
- Printed-circuit-board linear Paul trap for manipulating single nano- and microparticles.
- Free-space micro-graphics with electrically driven levitated light scatterers.
- The physics and applications of strongly coupled Coulomb systems (plasmas) levitated in electrodynamic traps
- Outside localization around a toroidal electrode of a Paul trap
- Development of levitated electromechanics of nanodiamond in a Paul trap
- Focused deposition of levitated nanoscale Au droplets
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