Beijing Zhongke Journal Publising Co. Ltd. This study is led by Dr. Zhaojin Rong (Institute of Geology and Geophysics, the Chinese Academy of Sciences). The magnetic field is the fundamental field in ...
Proton collisions at the LHC appear wildly chaotic, but new data reveal a surprising underlying order. The findings confirm that a basic rule of quantum mechanics holds true even in extreme particle ...
Inside high-energy proton collisions, quarks and gluons briefly form a dense, boiling state before cooling into ordinary ...
When two high-energy protons from the counter-circulating beams of the LHC collide, the entropy of the interacting quarks and gluons is virtually identical to the entropy of the hadrons that ...
High energy proton collisions can be pictured as a roiling sea of quarks and gluons, including short lived virtual particles. At first glance, this ...
A boiling sea of quarks and gluons, including virtual ones—this is how we can imagine the main phase of high-energy proton collisions. It would seem that particles here have significantly more ...