A Hamiltonian Model of Dissipative Wave-particle Interactions and the Negative-mass Effect | |
A. Zhmoginov | |
关键词: CHARGED PARTICLES; CYCLOTRON RADIATION; CYCLOTRONS; FRICTION; HAMILTONIANS; HEATING; KINETIC ENERGY; MAGNETIC FIELDS; NEGATIVE MASS; RADIATIONS; RESONANCE; TRANSVERSE ENERGY Adiabatic Invariance; Wave Interaction; Particles; Radiation Effects; | |
DOI : 10.2172/1007183 RP-ID : PPPL-4598 PID : OSTI ID: 1007183 Others : TRN: US1101495 |
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学科分类:原子、分子光学和等离子物理 | |
美国|英语 | |
来源: SciTech Connect | |
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【 摘 要 】
The effect of radiation friction is included in the Hamiltonian treatment of wave-particle interactions with autoresonant phase-locking, yielding a generalized canonical approach to the problem of dissipative dynamics near a nonlinear resonance. As an example, the negativemass eff ect exhibited by a charged particle in a pump wave and a static magnetic field is studied in the presence of the friction force due to cyclotron radiation. Particles with negative parallel masses m! are shown to transfer their kinetic energy to the pump wave, thus amplifying it. Counterintuitively, such particles also undergo stable dynamics, decreasing their transverse energy monotonically due to cyclotron cooling, whereas some of those with positive m! undergo cyclotron heating instead, extracting energy from the pump wave.
【 预 览 】
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