We used microparticles under hypergravity conditions, induced by a centrifuge, in order to measure nonintrusively and spatially resolved the electric field strength as well as the particle charge in the collisional rf plasma sheath. The measured electric field strengths demonstrate good agreement with the literature, while the particle charge shows decreasing values towards the electrode. We demonstrate that it is indeed possible to measure these important quantities without changing or disturbing the plasma
Once immersed in plasma, a dust particle gathers a highly negative charge due to the net collection ...
Once immersed in plasma, a dust particle gathers a highly negative charge due to the net collection ...
The electric field profile in the plasma sheath of an argon rf plasma has been determined by measuri...
We used microparticles under hypergravity conditions, induced by a centrifuge, in order to measure n...
We used microparticles under hypergravity conditions, induced by a centrifuge, in order to measure n...
We used microparticles under hypergravity conditions, induced by a centrifuge, in order to measure n...
We used microparticles under hypergravity conditions, induced by a centrifuge, in order to measure n...
We used microparticles under hypergravity conditions, induced by a centrifuge, in order to measure n...
When a plasma comes into contact with a solid body, a space charge region is formed near that surfac...
The electric field profile in the plasma sheath of an argon rf plasma has been determined by measuri...
The electric field profile in the plasma sheath of an argon rf plasma has been determined by measuri...
The electric field profile in the plasma sheath of an argon rf plasma has been determined by measuri...
Summary form only given: For diagnostic purposes micrometer-sized particles can be used as floating ...
Summary form only given: For diagnostic purposes micrometer-sized particles can be used as floating ...
Once immersed in plasma, a dust particle gathers a highly negative charge due to the net collection ...
Once immersed in plasma, a dust particle gathers a highly negative charge due to the net collection ...
Once immersed in plasma, a dust particle gathers a highly negative charge due to the net collection ...
The electric field profile in the plasma sheath of an argon rf plasma has been determined by measuri...
We used microparticles under hypergravity conditions, induced by a centrifuge, in order to measure n...
We used microparticles under hypergravity conditions, induced by a centrifuge, in order to measure n...
We used microparticles under hypergravity conditions, induced by a centrifuge, in order to measure n...
We used microparticles under hypergravity conditions, induced by a centrifuge, in order to measure n...
We used microparticles under hypergravity conditions, induced by a centrifuge, in order to measure n...
When a plasma comes into contact with a solid body, a space charge region is formed near that surfac...
The electric field profile in the plasma sheath of an argon rf plasma has been determined by measuri...
The electric field profile in the plasma sheath of an argon rf plasma has been determined by measuri...
The electric field profile in the plasma sheath of an argon rf plasma has been determined by measuri...
Summary form only given: For diagnostic purposes micrometer-sized particles can be used as floating ...
Summary form only given: For diagnostic purposes micrometer-sized particles can be used as floating ...
Once immersed in plasma, a dust particle gathers a highly negative charge due to the net collection ...
Once immersed in plasma, a dust particle gathers a highly negative charge due to the net collection ...
Once immersed in plasma, a dust particle gathers a highly negative charge due to the net collection ...
The electric field profile in the plasma sheath of an argon rf plasma has been determined by measuri...