Under suitable conditions, micron-sized dust particles introduced into inductively coupled argon plasma form a stable microscopic crystal lattice, known as a Coulomb (or plasma) crystal. In the experiment described, an external axial magnetic field was applied to various configurations of Coulomb crystal, including small crystal lattices consisting of one to several particles, and large crystal lattices with many hundreds of particles. The crystals were observed to rotate collectively under the influence of the magnetic field. This paper describes the experimental procedures and the preliminary results of this investigation
Ensembles of charged, micrometer-sized dust particles conned in the sheath of a rf-discharge are typ...
Magnetic fields can modify the physical properties of a complex plasma in various different ways. We...
The technical topic of the project was the experimental observation of Coulomb crystallization of ch...
Abstract. The rotation of Coulomb clusters with different numbers of micron-sized particles is obser...
Dust particle transport in low-temperature plasmas has received considerable attention due to the de...
Observations of crystal-like ordering of fine particles in plasmas were first reported in 1994, when...
The formation of a self-consistent crystalline structure is a well-known phenomenon in complex plasm...
iii Dust particle transport in partially ionized plasmas has been the focus of many recent investiga...
A complex plasma is a weakly ionized gas which includes small particles of solid matter. Particles c...
Dust particles immersed within a plasma environment, such as those found in planetary rings or comet...
A rotation of strongly-coupled fine-particle cloud, levitating above a negatively biased electrode, ...
Spontaneous formation of spinning pairs of particles, or torsions was studied in a single-layer comp...
Dust particles immersed within a plasma environment, such as those in protostellar clouds, planetary...
In this contribution, we report on the experimental observation of a new type of collective excitati...
In a ground-based definition study, a concept for a new type of microgravity experiment is developed...
Ensembles of charged, micrometer-sized dust particles conned in the sheath of a rf-discharge are typ...
Magnetic fields can modify the physical properties of a complex plasma in various different ways. We...
The technical topic of the project was the experimental observation of Coulomb crystallization of ch...
Abstract. The rotation of Coulomb clusters with different numbers of micron-sized particles is obser...
Dust particle transport in low-temperature plasmas has received considerable attention due to the de...
Observations of crystal-like ordering of fine particles in plasmas were first reported in 1994, when...
The formation of a self-consistent crystalline structure is a well-known phenomenon in complex plasm...
iii Dust particle transport in partially ionized plasmas has been the focus of many recent investiga...
A complex plasma is a weakly ionized gas which includes small particles of solid matter. Particles c...
Dust particles immersed within a plasma environment, such as those found in planetary rings or comet...
A rotation of strongly-coupled fine-particle cloud, levitating above a negatively biased electrode, ...
Spontaneous formation of spinning pairs of particles, or torsions was studied in a single-layer comp...
Dust particles immersed within a plasma environment, such as those in protostellar clouds, planetary...
In this contribution, we report on the experimental observation of a new type of collective excitati...
In a ground-based definition study, a concept for a new type of microgravity experiment is developed...
Ensembles of charged, micrometer-sized dust particles conned in the sheath of a rf-discharge are typ...
Magnetic fields can modify the physical properties of a complex plasma in various different ways. We...
The technical topic of the project was the experimental observation of Coulomb crystallization of ch...