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In general relativity theory, graviton is the massless tensor particle, which results in gravitation action in proportion to the energy.

在爱因斯坦引力理论下,引力子为零质量的张量粒子,它导致了粒子之间存在着正比于能量的引力作用。

Since the other forces work by exchanging carrier particles, we assume that gravity does too and call the carrier the graviton.

既然其它的力都是通过交换载体粒子来作用,我们假设引力也是如此并且称其载体为引力子

So only have two kind of basic particle, clearly, the repulton just the electron;who is the graviton?

所以,基本粒子只有斥力子与引力子两种,显然,斥力子就是电子,引力子是谁?

In the paper whether or not the graviton is the candidate of the dark matter and dark energy is discussed by calculating interactional potential energy of graviton.

本文就通过计算引力子之间的相互作用势能来探讨引力子是否可以作为宇宙暗物质暗能量的候选者。

So how does this fit with Einstein's idea of gravity being geometry? There is some suggestion that the graviton itself is a collective effect that shows up when you tweak the underlying structure of spacetime in a certain way.

至于引力子和爱因斯坦理论中的关系,有人认为引力子本身也是当你以特定方式调节宇宙的时空结构时所展现出来的一种累积效应。

In EDSM, one does not introduce new flavor changing couplings, so the enhancement of the cross section of the top-charm associated production by gravity comes from s-channel virtual graviton exchange.

在带额外维标准模型中并没有引入新的味道改变顶点,因此引力对末态top-charm关联产生截面的增强来自于s道虚引力子的交换效应。

Upon that, electron and graviton form the vortex relation can on the polymer initial stage only, at this time ,degree of polymerization is smaller, leavings force ling are much..

总体上,所有粒子都受到引力的作用,任何一枚粒子,它向空间发出的引力线并非仅仅着用于一个对象,引力子对外,仅形成引力,斥力子对外既形成斥力也形成引力,质子、中子是"微回旋星系",它们以"星系"为单位在原子内部回旋,原子外层电子的数量要比现在认为的多上亿倍,原子结构是由这些成员力的关系和能量不灭规律决定的。

In Quantum Gravity theory, gravity is produced by massless gravitons so that gravitons now represent individual packages of curved space that travel through space at the speed of light.

在量子引力论中,引力产生于无质量的引力子,只有这样才能解释引力子何以以独立的空间弯曲因子的形式在空间中以光速传播。

But according to principle of relativity and absolutization theory, the effort of super symmetry has no end, super symmetry demands the existence of gravity-微子 with spin 2/3 except gravity-quantum.

但是根据对称的相对性与绝对性原理,超对称的工作是没有止境的。超对称要求除引力子外,还应当有自旋3/2的引力微子存在,但是实验上并没有发现它的存在。

The gravitational thermodynamics of space-time foam is studied in Chapter 5 by one-loop quantum gravity and statistical thermodynamics. It is shown by further discussions of Hawking's results that Hawking-Unruh themal radiation should contain thermal gravitons or the contribution of quantum space-time foam. As a by-product, the one-loop quantum gravity correction to the classical black hole thermodynamics is also given.

我们在第五章用单圈量子引力和统计热力学探讨了时空泡沫的引力热力学,对Hawking的研究成果的进一步讨论表明,Hawking-Unruh热辐射应该还包含热引力子或量子时空泡沫的贡献,我们同时给出了单圈量子引力对经典黑洞热力学的校正。

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47:5 法老对约瑟说,你父亲和你弟兄们到你这里来了。

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