摘要
(1)目前高能工程发展出现跌落于Livingston线的现象,这暗示重电子学型e^+e^-、pp对撞机发展到几十公里长已到尽头,但光子学(Photonics)对撞机的工艺精度尚不能及,于是声子学(Phononics)将有可能推进新一代μ^+μ^-量子对撞机并有所spin-off。(2)高能对撞机的目标是验证《SM》和《SUSY》,其理论基础是从《杨-Mills规范场论》,《SM》的成功证明东西方文化交融是新物理的一种泉源。(3)《规范场论》的两大支柱《广义相对论》和《正统量子论》被实验证明是不相容的,但其深入结合导致《SM》的成功,说明:《不相容的兼容原理》存在而导致今天的高能成为"大科学"的局面。
Recent development of high energy machines lays behind Livingston line, It hints that up to thirty kilometers long e +e and pp colliders based on heavy electronics are reaching to the end. However, the technological precision of photonic collider is still too difficult to carry out. Thus, phononics will be the new technological physics for the R and D of new generation of colliders including quantum μ +μ - colliders. This improvement has its own spin off. (2)The physical motivation of colliders now ...
出处
《物理学进展》
CSCD
北大核心
1996年第3期657-657,共1页
Progress In Physics