Observation of impurity ions during a plasma translation experiment in nested Penning traps
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[1] Y. Nakajima,et al. Clear imaging of ion cloud rotation using a combination of a thin metal wire, a micro-channel plate attached to a phosphor screen, and a high-speed camera , 2022, AIP Advances.
[2] T. Kanki,et al. Simulations of novel compact separator for extracting specific reactive ions from large plasma source , 2022, Japanese Journal of Applied Physics.
[3] Y. Nakajima,et al. Counter differential rigid-rotation equilibrium of electrically non-neutral two-fluid plasma with finite pressure , 2021, Journal of Plasma Physics.
[4] E. A. Hessels,et al. Two-symmetry Penning-Ioffe trap for antihydrogen cooling and spectroscopy , 2020, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment.
[5] J. Fajans,et al. Plasma and trap-based techniques for science with antimatter , 2020, Physics of Plasmas.
[6] H. Yamada,et al. Isotope Effect on Energy Confinement Time and Thermal Transport in Neutral-Beam-Heated Stellarator-Heliotron Plasmas. , 2019, Physical review letters.
[7] H. Himura,et al. Studies of ion leakage from a Penning trap induced by potential barrier closure , 2018, Physics of Plasmas.
[8] C. J. Baker,et al. Characterization of the 1S–2S transition in antihydrogen , 2018, Nature.
[9] W. Bertsche. Prospects for comparison of matter and antimatter gravitation with ALPHA-g , 2018, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[10] C. Smorra,et al. Challenging the standard model by high-precision comparisons of the fundamental properties of protons and antiprotons , 2018, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[11] R. StonekingMatthew. Preface: Non-Neutral Plasma Physics X , 2018 .
[12] H. Himura. Recent experiments with lithium ion and electron plasmas in the BX-U linear trap , 2018 .
[13] Toshiki Kato,et al. Two-dimensional macroscopic shapes of lithium ion and electron plasmas after elapse of two-fluid plasma state , 2018 .
[14] A. Kellerbauer,et al. Ultracold Anions for High-Precision Antihydrogen Experiments. , 2017, Physical review letters.
[15] K. Blaum,et al. Sympathetic cooling of protons and antiprotons with a common endcap Penning trap , 2017, 1709.00433.
[16] J. Aoki,et al. Intermittent ion leakage from a Penning trap during potential barrier closure , 2017 .
[17] H. Himura,et al. Applicability of micro-channel plate followed by phosphor screen to charged particles. , 2016, The Review of scientific instruments.
[18] H. Himura. BX-U linear trap for one-way production and confinement of Li+ and e− plasmas , 2016 .
[19] C. Amsler,et al. The ATHENA experiment for the study of antihydrogen , 2014 .
[20] Youngsoo Park,et al. Mechanisms of E × B Drift Rotation of a Vortex String in a Pure Electron Plasma , 2013 .
[21] A. Zhmoginov,et al. Experimental and computational study of the injection of antiprotons into a positron plasma for antihydrogen production , 2013 .
[22] Uri Shumlak,et al. Advanced physics calculations using a multi-fluid plasma model , 2011, Comput. Phys. Commun..
[23] J. Wurtele,et al. Trapped antihydrogen , 2010, Nature.
[24] Jung-Sik Yoon,et al. Cross Sections for Electron Collisions with Hydrogen Molecules , 2008 .
[25] J. Aoki,et al. Formation and relaxation of two-dimensional vortex crystals in a magnetized pure-electron plasma. , 2007, Physical review letters.
[26] C. Driscoll,et al. Ion-Induced Instability of Diocotron Modes in Electron Plasmas Modelling Curvature-Driven Flute Modes , 2007 .
[27] Klaus Blaum,et al. High-accuracy mass spectrometry with stored ions , 2006 .
[28] A. Makarov,et al. Performance evaluation of a hybrid linear ion trap/orbitrap mass spectrometer. , 2006, Analytical chemistry.
[29] N. Mason,et al. Cross Sections for Electron Collisions with Water Molecules , 2005 .
[30] E. A. Hessels,et al. Background-free observation of cold antihydrogen with field-ionization analysis of its states. , 2002, Physical review letters.
[31] C. Ordonez,et al. Possibilities for achieving antihydrogen recombination and trapping using a nested Penning trap and a magnetic well , 2002 .
[32] A. Hyatt,et al. Parallel energy analyzer for pure electron plasma devices , 1992 .
[33] G. Bollen,et al. A new cooling technique for heavy ions in a Penning trap , 1991 .
[34] Fine,et al. Measurements of symmetric vortex merger. , 1991, Physical review letters.
[35] C. Driscoll,et al. Long-Time Containment of a Pure Electron Plasma , 1980 .
[36] A. Crowe,et al. Dissociative ionization by electron impact. I. Protons from H2 , 1973 .
[37] F. Engelmann,et al. Cyclotron radiation from a rarefied inhomogeneous magnetoplasma , 1973 .
[38] S. Hałas,et al. Cross sections for the production of N2+, N+ and N22+ from nitrogen by electrons in the energy range 16–600 eV , 1972 .
[39] G. Lewin,et al. Reduction of stainless-steel outgassing in ultra-high vacuum , 1967 .
[40] B. Schram,et al. Partial Ionization Cross Sections of He, Ne, H2, and CH4 for Electrons from 20 to 500 eV , 1966 .