It is assumed that the electron charge accelerated in small-size betatons is of the same order as that in the classical betatron. However, the parameters of the interpolar space of small-size betatons significantly differ from the parameters of the classical betatron. We can expect that the value of the accelerated electron charge will be different. The paper presents the results of the measurements of the electron charge accelerated in a small-size betatron MIB-4. It is shown that the electron charge accelerated is this betatron is larger than that in the classical betatron
Accelerators with energy level up to 4 MeV having high level of penetration ability by steel equival...
Sensitive experiments with low energy neutrons are being used as tests for physics beyond the standa...
This thesis will detail experimental research in to laser wakefield acceleration (LWFA), with a part...
This article describes the betatron magnetic field simulation in Comsol Multiphysics software packag...
The paper researches some difficulties that emerge in the production ofseries small-sized betatrons....
The small-sized betatrons for energy 3-8 MeV found application in the nondestructive quality control...
Electron trapping and acceleration have been successfully accomplished in the modified elongated bet...
The article describes the search for optimal geometric parameters of the betatron injector. First of...
One of the main advantages of small-size betatrons is small focal spot size. However there is no con...
The simulation problem of self-consistent dynamics of electron beam in small-size betatrons has been...
The Allis-Chalmers betatron is a high-energy induction electron accelerator commercially made for t...
Betatron radiation from direct-laser-accelerated electrons is characterized analytically and numeric...
The betatron circuit for a plasma betatron experiment, has been designed and constructed. The betatr...
It is well known, that high-energy electrons can be used for tumor therapy. The so-called convention...
We present results from recent experiments on the generation of high-power relativistic electron bea...
Accelerators with energy level up to 4 MeV having high level of penetration ability by steel equival...
Sensitive experiments with low energy neutrons are being used as tests for physics beyond the standa...
This thesis will detail experimental research in to laser wakefield acceleration (LWFA), with a part...
This article describes the betatron magnetic field simulation in Comsol Multiphysics software packag...
The paper researches some difficulties that emerge in the production ofseries small-sized betatrons....
The small-sized betatrons for energy 3-8 MeV found application in the nondestructive quality control...
Electron trapping and acceleration have been successfully accomplished in the modified elongated bet...
The article describes the search for optimal geometric parameters of the betatron injector. First of...
One of the main advantages of small-size betatrons is small focal spot size. However there is no con...
The simulation problem of self-consistent dynamics of electron beam in small-size betatrons has been...
The Allis-Chalmers betatron is a high-energy induction electron accelerator commercially made for t...
Betatron radiation from direct-laser-accelerated electrons is characterized analytically and numeric...
The betatron circuit for a plasma betatron experiment, has been designed and constructed. The betatr...
It is well known, that high-energy electrons can be used for tumor therapy. The so-called convention...
We present results from recent experiments on the generation of high-power relativistic electron bea...
Accelerators with energy level up to 4 MeV having high level of penetration ability by steel equival...
Sensitive experiments with low energy neutrons are being used as tests for physics beyond the standa...
This thesis will detail experimental research in to laser wakefield acceleration (LWFA), with a part...