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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >SEMICLASSICAL VIOLATION OF THE EQUIVALENCE PRINCIPLE IN THE GRAVITATIONAL LENSES REALM
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SEMICLASSICAL VIOLATION OF THE EQUIVALENCE PRINCIPLE IN THE GRAVITATIONAL LENSES REALM

机译:引力透镜领域中等效原理的半经典违反

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An expression for the gravitational deflection angle of a high-energy massless scalar boson is computed using the JWKB method. The resulting expression depends on the energy of the scalar boson or, equivalently, on its wavelength, even to first order in GM b , where G is Newton’s constant, M is the mass of the gravitational source, and b is the impact parameter. On the other hand, combining the expressions for the magnification of two images obtained from a gravitational lens with the classical expression for the cross section, it is found that for purely gravitational scatterings the gravitational cross sections are proportional to the relative intensities. As a consequence of this remarkable proportionality and of the fact that the deflection angle obtained via the JWKB method is energy dependent, we come to the conclusion that chromatic effects in the gravitational lenses at the semiclassical level are possible, which violates the classical equivalence principle. The probability of detecting this tiny effect in the foreseeable future is discussed.
机译:使用JWKB方法计算高能无质量标量玻色子的重力偏转角的表达式。结果表达式取决于标量玻色子的能量,或者等效于其波长,甚至取决于GM b的一阶,其中G是牛顿常数,M是重力源的质量,b是冲击参数。另一方面,将从重力透镜获得的两个图像的放大率的表达式与横截面的经典表达式相结合,发现对于纯重力散射,重力横截面与相对强度成比例。由于这种显着的比例关系以及通过JWKB方法获得的偏转角取决于能量的事实,我们得出的结论是,重力透镜在半经典水平上可能会产生色差,这有悖于经典的等效原理。讨论了在可预见的将来检测到这种微小影响的可能性。

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