超薄材料可能为个人尺寸的量子设备铺平道路 诸平 Credit: CC0 Public Domain 据美国麻省理工学院( Massachusetts Institute of Technology 简称 MIT ) 2022 年 1 月 28 日提供的消息, MIT 与日本国立材料科学研究所( National Institute for Materials Science , Tsukuba, Japan )的研究人 ...
物理学家发现了一个解决百万美元数学难题的新方法 诸平 据美国加州大学圣巴巴拉分校( University of California - Santa Barbara ) 2022 年 1 月 19 日提供的消息,加州大学圣巴巴拉分校的物理学家格兰特·雷蒙( Grant Remmen )相信他有一种探索ζ函数怪癖的新方法( Quantum zeta epiphany: Physicist ...
MIT : 首次在夸克胶子等离子体中探测到奇异的 “ X ” 粒子 诸平 Physicists have found evidence of rare X particles in the quark-gluon plasma produced in the Large Hadron Collider (LHC) at CERN. The findings could redefine the kinds of particles that were abundant in the early univer ...
MIT: 控制 “ 奇偶 ” 表面和液体如何相互作用 诸平 Mercury deposited on an ordinary flat surface beads up and sits atop the surface, as seen here on the left. On specially treated surfaces with re-entrant openings prefilled with liquid (on the right), a drop of mercury instead spreads ...
研究人员发明了一种分子装置, 可以记录和改变细胞的生物电场而不造成损害 诸平 A conceptual drawing of the new molecular device. For experiments outside the human body (in vitro), the device would nest on the cell's membrane: A “reporter” molecule would detect the local electric fi ...
调整成对量子粒子的键以创造无耗散的流动 诸平 Fig. 1 An illustration of positively charged holes interacting with negatively charged electrons between two sheets of graphene to form a bosonic pair. Credit: Cory R. Dean, Columbia University Fig. 2 A second illustration of positi ...