1988Journal of the Physical Society of JapanRequires access

Optimum Condition for Spatial Ion Cyclotron Resonance in a Multiple Magnetic Mirror Field

Tetsu Mieno, Rikizo Hatakeyama, Noriyoshi Sato

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Abstract

A Spatial cyclotron resonance of ion beams passing through a multiple magnetic mirror field is investigated experimentally by varying parameters of the multiple mirror field. The optimum resonance condition is realized with a decrease in the cell length of the multiple mirror along the beams to satisfy the local condition of the spatial ion cyclotron resonance. The results show a remarkable increase of nonadiabatic transfer of the beam energy into the transverse direction to the magnetic field.

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What this paper is about

A Spatial cyclotron resonance of ion beams passing through a multiple magnetic mirror field is investigated experimentally by varying parameters of the multiple mirror field. The optimum resonance condition is realized with a decrease in the cell length of the multiple mirror along the beams to satisfy the local condition of the spatial ion cyclotron resonance. The results show a remarkable increase of nonadiabatic transfer of the beam energy into the transverse direction to the magnetic field.

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Available abstract

A Spatial cyclotron resonance of ion beams passing through a multiple magnetic mirror field is investigated experimentally by varying parameters of the multiple mirror field. The optimum resonance condition is realized with a decrease in the cell length of the multiple mirror along the beams to satisfy the local condition of the spatial ion cyclotron resonance. The results show a remarkable increase of nonadiabatic transfer of the beam energy into the transverse direction to the magnetic field.

Key concepts: Magnetic mirror, Cyclotron resonance, Ion cyclotron resonance, Magnetic field, Electron cyclotron resonance, Physics, Cyclotron, Fourier transform ion cyclotron resonance

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