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Dive into the research topics where E. V. Stenson is active.

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Featured researches published by E. V. Stenson.


Journal of Plasma Physics | 2017

Debye length and plasma skin depth: two length scales of interest in the creation and diagnosis of laboratory pair plasmas

E. V. Stenson; J. Horn-Stanja; M.R. Stoneking; T. Sunn Pedersen

In traditional electron/ion laboratory plasmas, the system size


13th International Workshop on Slow Positron Beam Techniques and Applications (SLOPOS13) | 2014

Recent status of A Positron-Electron Experiment (APEX)

H. Saitoh; T. S. Pedersen; U. Hergenhahn; E. V. Stenson; N. Paschkowski; Christoph Hugenschmidt

L


AIP Conference Proceedings | 2018

Manipulation of positron orbits in a dipole magnetic field with fluctuating electric fields

H. Saitoh; J. Horn-Stanja; S. Nißl; E. V. Stenson; U. Hergenhahn; T. Sunn Pedersen; M. Singer; Marcel Dickmann; Christoph Hugenschmidt; M. R. Stoneking; J. R. Danielson; C. M. Surko

is much larger than both the plasma skin depth


AIP Conference Proceedings | 2018

Toward a compact levitated superconducting dipole for positron-electron plasma confinement

M. R. Stoneking; H. Saitoh; M. Singer; E. V. Stenson; J. Horn-Stanja; T. Sunn Pedersen; S. Nißl; U. Hergenhahn; N. Yanagi; Christoph Hugenschmidt; Marcel Dickmann; J. R. Danielson; C. M. Surko

l_{s}


Physical Review Letters | 2018

Positron-Induced Luminescence

E. V. Stenson; U. Hergenhahn; M. R. Stoneking; T. S. Pedersen

and the Debye length


82. Jahrestagung der DPG und DPG-Frühjahrstagung der Sektion AMOP | 2018

SIESTA: a new high-current ion source for angle-dependent sputter yield measurementsProgress on the development of superconducting coils as confinement devices for pair plasmas

M. Singer; J. R. Danielson; M. Dickmann; U. Hergenhahn; J. Horn-Stanja; S. Nissl; H. Saitoh; E. V. Stenson; M. R. Stoneking; T. S. Pedersen; C. Hugenschmidt

\unicode[STIX]{x1D706}_{D}


82. Jahrestagung der DPG und DPG-Frühjahrstagung der Sektion AMOP | 2018

Limitations on positron confinement in a magnetic dipole trap

J. Horn-Stanja; U. Hergenhahn; S. Nissl; T. S. Pedersen; H. Saitoh; E. V. Stenson; M. R. Stoneking; M. Dickmann; C. Hugenschmidt; M. Singer; J. R. Danielson

. In current and planned efforts to create electron/positron plasmas in the laboratory, this is not necessarily the case. A low-temperature, low-density system may have


45th EPS Conference on Plasma Physics | 2018

Near-lossless positron injection into a dipole magnetic field

E. V. Stenson; U. Hergenhahn; S. Nissl; J. Horn-Stanja; H. Saitoh; T. S. Pedersen; M. R. Stoneking; M. Singer; M. Dickmann; C. Hugenschmidt; J. R. Danielson; C. M. Surko

\unicode[STIX]{x1D706}_{D}<L<l_{s}


DPG-Frühjahrstagung der Sektion Materie und Kosmos (SMuK) | 2017

High-efficiency injection of positrons into a magnetic dipole trap

M. Singer; J. R. Danielson; M. Dickmann; U. Hergenhahn; J. Horn-Stanja; H. Saitoh; E. V. Stenson; M. R. Stoneking; T. S. Pedersen; C. Hugenschmidt

; a high-density, thermally relativistic system may have


DPG-Frühjahrstagung der Sektion Materie und Kosmos (SMuK) | 2017

Compression of the radial positron profile in a magnetic dipole trap by rotating electric fields

J. Horn-Stanja; U. Hergenhahn; T. S. Pedersen; H. Saitoh; E. V. Stenson; M. R. Stoneking; M. Dickmann; C. Hugenschmidt; M. Singer; J. R. Danielson

l_{s}<L<\unicode[STIX]{x1D706}_{D}

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C. M. Surko

University of California

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