Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Puttscher, M.
and
Melzer, A.
2015.
Vertically aligned dust particles under the influence of crossed electric and magnetic fields in the sheath of a radio frequency discharge.
Physics of Plasmas,
Vol. 22,
Issue. 7,
Thomas, Edward
Konopka, Uwe
Lynch, Brian
Adams, Stephen
LeBlanc, Spencer
Merlino, Robert L.
and
Rosenberg, Marlene
2015.
Quasi-discrete particle motion in an externally imposed, ordered structure in a dusty plasma at high magnetic field.
Physics of Plasmas,
Vol. 22,
Issue. 11,
Thomas, Edward
Konopka, Uwe
Merlino, Robert L.
and
Rosenberg, Marlene
2016.
Initial measurements of two- and three-dimensional ordering, waves, and plasma filamentation in the Magnetized Dusty Plasma Experiment.
Physics of Plasmas,
Vol. 23,
Issue. 5,
Saitou, Yoshifumi
2016.
Motions of dust particles in a complex plasma with an axisymmetric nonuniform magnetic field.
Physics of Plasmas,
Vol. 23,
Issue. 1,
Rosenberg, M.
2016.
On Dust Wave Instabilities in Collisional Magnetized Plasmas.
IEEE Transactions on Plasma Science,
Vol. 44,
Issue. 4,
p.
451.
Wang, Zhehui
Lunsford, Robert
Mansfield, Dennis K.
and
Nichols, Jacob H.
2016.
Existing and new applications of micropellet injection (MPI) in magnetic fusion.
Journal of Plasma Physics,
Vol. 82,
Issue. 2,
Bates, E. M.
Birmingham, W. J.
and
Romero-Talamas, C. A.
2016.
Development of a Bitter-Type Magnet System.
IEEE Transactions on Plasma Science,
Vol. 44,
Issue. 4,
p.
540.
Jaiswal, S.
Hall, T.
LeBlanc, S.
Mukherjee, R.
and
Thomas, E.
2017.
Effect of magnetic field on the phase transition in a dusty plasma.
Physics of Plasmas,
Vol. 24,
Issue. 11,
Tadsen, Benjamin
Greiner, Franko
and
Piel, Alexander
2018.
Probing a dusty magnetized plasma with self-excited dust-density waves.
Physical Review E,
Vol. 97,
Issue. 3,
Howes, Gregory G.
2018.
Laboratory space physics: Investigating the physics of space plasmas in the laboratory.
Physics of Plasmas,
Vol. 25,
Issue. 5,
Merlino, R. L.
Thomas, E.
Lynch, B.
LeBlanc, S.
Hall, T.
Konopka, U.
and
Rosenberg, M.
2018.
The magnetized dusty plasma experiment (MDPX).
Vol. 1928,
Issue. ,
p.
020011.
Shahzad, Aamir
Asif Shakoori, Muhammad
HE, Mao-Gang
and
Feng, Yan
2019.
Plasma Science and Technology - Basic Fundamentals and Modern Applications.
Segwal, Kavita Rani
and
Sharma, Suresh C.
2019.
A Nonlocal Theory of Current-Driven Low-Frequency Modes in a Magnetized Strongly Coupled Collisional Dusty Plasma.
IEEE Transactions on Plasma Science,
Vol. 47,
Issue. 7,
p.
3087.
Haque, M. N.
Mannan, A.
and
Mamun, A. A.
2019.
Three-dimensional Nonlinear Structures in Magnetized Complex Plasmas.
Plasma Physics Reports,
Vol. 45,
Issue. 11,
p.
1026.
Begum, Mahmuda
and
Das, Nilakshi
2019.
Thermal Conductivity and Shear Viscosity of Strongly Coupled Dusty Plasma.
IEEE Transactions on Plasma Science,
Vol. 47,
Issue. 1,
p.
776.
Kumar, Atul
Das, Amita
and
Kaw, Predhiman
2019.
Coupling of drift wave with dust acoustic wave.
Physics of Plasmas,
Vol. 26,
Issue. 8,
Menati, Mohamad
Thomas, Edward
and
Kushner, Mark J.
2019.
Filamentation of capacitively coupled plasmas in large magnetic fields.
Physics of Plasmas,
Vol. 26,
Issue. 6,
Wang, Zhehui
Xu, Jiayi
Kovach, Yao E.
Wolfe, Bradley T.
Thomas, Edward
Guo, Hanqi
Foster, John E.
and
Shen, Han-Wei
2020.
Microparticle cloud imaging and tracking for data-driven plasma science.
Physics of Plasmas,
Vol. 27,
Issue. 3,
Menati, Mohamad
Hall, Taylor
Rasoolian, Behnam
Couëdel, Lénaïc
Thomas, Edward
and
Konopka, Uwe
2020.
Experimental observation and numerical investigation of imposed pattern formation in magnetized plasmas by a wide wire mesh.
Plasma Sources Science and Technology,
Vol. 29,
Issue. 8,
p.
085015.
Kumar, Prince
and
Sharma, Devendra
2020.
Dust vortex flow analysis in weakly magnetized plasma.
Physics of Plasmas,
Vol. 27,
Issue. 6,