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[科学超电磁炮][6]的一个细节的详细解释.

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发表于 2009-11-20 07:35:29 | 显示全部楼层 |阅读模式




*****以下是对上图level4能力者简介的翻译*****

Synchrotron
同步加速器

Ability development experiment data
能力发展的实验数据

In general, after the particle is not accelerated with a synchrotron alone, and the particle accelerated into suitable energy by the accelerator in the former steps is entered, it is operated in the form that accelerates into higher energy. A linear accelerator, a cyclotron, and a small synchrotron, etc. are used as the former steps accelerator.
一般来说,在同步加速器里的单个粒子还没有加速运动的状态下,粒子可借用加速装置加速到适当的能量(速度)。同理,借用加速装置下的粒子也可以达到高能量(速度)状态。直线加速器,粒子回旋加速器,和小的同步加速器等等类似的加速器都可以应用在粒子加速上。

The best design is different according to the ratio charge of the accelerating particle, and there is especially a big difference between the electron synchrotron and the proton and the heavy-ion synchrotron.
根据加速粒子的电荷比率(带电粒子)的不同,从而应用不同的加速器。然而电子同步加速器,质子同步加速器,和重离子同步加速器这三者之间也有着很大的区别。

Therefore, it is difficult to use it for both usages with one accelerator for the acceleration energy to grow. Especially, assuming either special design is usual in the large-scale synchrotron used for the energy frontier search.
所以呢,只使用单独一种加速器很难使其他带有不符电荷比率的粒子的能量得到提高。特别是,假设任意一个特别设计的一般在大规模的同步加速器由于能源前沿的探究。

If it is never accelerated because the speed is fast, and the energy penalty by the synchrotron emission is large by big power.
如果是因为粒子的速度太快,已经无法继续加速(目前的科技,粒子的速度是无法超越光速的,只能是无限接近光速。所以接近光速后,就不会再继续加速了)。所以说呢,在这种状态下同步加速器内的粒子会损失掉大量能量(道理很简单,如果接近光速的粒子的能量还在不断的提升,那么粒子最终就会达到光速或者超越光速,但是超越光速是不符合理论的,所以粒子就会损失能量,从而就不会超越光速了)。

The electromagnet ([bendel; ngumagunetto]) used cannot keep the energy of the electron because it can easily bend the orbit for the electron even in a comparatively small magnetic field even by
电磁铁([本代尔; ngumagunetto])的应用也不能维持电子的能量,因为它可以很容易地弯曲电子的轨道,即使在一个相对较小的磁场

… it is said… it is an optical. Of be produced inside electromagnetic radiated.
它是一种光学。内部产生的电磁辐射
发表于 2009-12-11 10:36:33 | 显示全部楼层
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发表于 2010-4-5 22:06:12 | 显示全部楼层
很好很强大啊…………

一直很喜欢电炮的说……
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