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引力的本质是什么? 被引量:3

What is the nature of gravity?
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摘要 自然界存在4种基本相互作用力,其中电磁、强、弱相互作用能够成功地进行量子力学描述,但是由广义相对论描述的引力却和量子理论不协调.本文从量子力学和广义相对论出发,讨论了对引力进行量子描述时出现的矛盾,同时介绍当今比较有希望解决这个矛盾的超弦理论对这个问题的解释,最后对引力基本性质的实验检验情况作简单介绍. There are four conventionally accepted fundamental interactions in nature--gravitational, electromagnetic, strong, and weak forces. The gravitational force, based on Einstein's general theory of relativity, is described as a continu- ous classical field. The other three, part of the standard model of particle physics, are described as discrete quantum fields, and their interactions are each carried by a quantum, an elementary particle. Two theoretical frameworks upon which all modern physics rests have been developed and have been able to withstand almost all the experi- mental tests so far individually, but they are mutually incompatible---they cannot both be right. It is a puzzle in physics that the two perfect theories are not compatible, and how to reconcile quantum theory with general relativ- ity is still an open question. Our understanding on the nature of gravity is the key issue. In this article, we first in- troduce interpretation of gravity in the framework of general relativity, in which gravity is not a real force but a representation of the curved spacetime. On the other hand, the standard model gave a different interpretation of gravity, in which gravity is effects of exchange of gravitons between two masses. Graviton is the fundamental par- ticle, whose mass is zero and spin is two, but it has not been found in any experiments. Then, the contradiction when scientists attempt to unify general relativity and quantum theory is introduced. The superstring theory, a quantum theory not of point particles and a possible candidate in pursuit of a theory of everything in nature, seems to give an unique solution to solve the contradiction, in which all of the particles and interactions of nature are modelled as the vibrations of tiny supersymmetric strings, and the price to pay is unusual features such as six extra dimensions of space in addition to the usual three. The size of the string is about 10-35m, the Plank scale. String and its vibration could construct everything, which also includes gravity, and the physical properties of forces and par- ticles were decided by the frequencies of the string, such as spin and mass. The superstring theory had a puzzle that supersymmetry could be drew into string theory to form five different superstring theories by five different methods. M-theory was born with the development of superstring theory, which unified five different forms of superstring theory. Finally, the experimental tests of the nature of gravity is briefly introduced.
作者 秦成刚 邵成刚 涂良成 QIN ChengGang SHAO ChengGang TU LiangCheng(Key Laboratory of Fundamental Physical Quantities Measurements of Ministry of Education, School of Physics, Huazhong University of Science and Technology, Wuhan 430074, Chin)
出处 《科学通报》 EI CAS CSCD 北大核心 2017年第15期1555-1558,共4页 Chinese Science Bulletin
基金 国家自然科学基金(11325523)资助
关键词 引力 标准模型 超弦理论 gravity, standard model, superstring theory
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