Design method of superconductor focusing synchrocyclotron

A technology of cyclotron and design method, which is applied in the direction of magnetic resonance accelerators, accelerators, electrical components, etc., and can solve problems such as high cost, difficult maintenance, and large volume
CN103228093AInactive Publication Date: 2013-07-31胡明建 +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
胡明建
Publication Date
2013-07-31
Estimated Expiration
Not applicable · inactive patent

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Abstract

The invention discloses a superconductor focusing synchrocyclotron, and belongs to the field of physics. The available magnetic field intensity is insufficient, so that sizes of accelerators are very large; the superconductor focusing synchrocyclotron solves the problem; the sizes of the accelerators are reduced greatly; and a main technology is that magnetic force lines are focused by a superconductor to greatly improve the magnetic field intensity, so that charged particles can be accelerated to very high speeds with very small sizes.
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Description

technical field

[0001] Superconductor focusing synchrocyclotron technology is to accelerate charged particles to a very high speed, which belongs to the field of physics. The accelerator is the most important scientific instrument invented by human beings. It is an important tool for human beings to study particle physics and smaller-sized material structures. And its application range is also very wide. However, due to the insufficient strength of the existing magnetic field, the volume of the accelerator is very large. The superconductor focusing synchrocyclotron solves this problem and greatly reduces the volume of the accelerator. Background technique

[0002] In 1919, scientist Rutherford used a high-speed alpha particle beam (ie, helium nucleus) with energy of several MeV and a speed of 2×109 cm / s in a natural radioactive source as a "cannonball" to bombard the "cannonball" of a metal foil with a thickness of only 0.0004 cm. Target", realizing the first artificial nucl...

Claims

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