Method and system for generating chirped Airy vortex electron plasma wave
A plasma and electronic technology, applied in the field of optics, can solve the problems of low efficiency and high cost, and achieve the effect of improving efficiency and saving cost
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Embodiment 1
[0040] Such as Figure 1-4 As shown, the present invention provides a method for generating chirped Airy vortex electron plasma waves, comprising:
[0041] First, an electron beam is emitted by an electron gun, and passes through a nano-holographic diffraction pattern, which has the function of cubic phase modulation, that is, adding The hologram is then designed as a binary diffraction grating, following this shape, So in this way the cubic phase is piggybacked on the carrier frequency. Among them, x represents the direction of the x-axis, y represents the direction of the y-axis, and c x is the phase factor in the x-axis direction, c y is the phase factor in the y-axis direction, and Λ is the period of the carrier. S 0 is the ridge height of the binary phase mask. D is an arbitrary duty cycle factor. Then through a series of magnetic lenses, Fourier modulation can be performed on the e-book, and finally the Airy electron beam is obtained. Then, the generated Airy e...
Embodiment 2
[0043] Such as Figure 5 As shown, the present invention also provides a system for generating chirped Airy vortex electron plasma waves, comprising:
[0044] An electron gun for emitting a beam of electrons;
[0045] Nano-holographic diffraction patterns for cubic phase modulation through electron beams;
[0046] The magnetic lens is used to perform Fourier modulation on the electron beam to obtain the Airy electron beam;
[0047]The binary mask is used to pass the generated Airy electron beam through the binary mask printed with the holographic diffraction pattern of the forked dislocation nano-grating to generate a phase vortex to obtain the Airy vortex electron beam;
[0048] The chirp generator is used to modulate the Airy vortex electron beam, that is, in the intensity modulator, the intensity modulation of the electron beam is driven by a radio frequency signal to obtain an intensity pulse signal loaded with radio frequency information;
[0049] an intensity modulato...
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