Haddad D, Seifert F, Chao L S, Li S, Newell D B, Pratt J R, Williams C, Schlamminger S
National Institute of Standards and Technology (NIST), 100 Bureau Drive Stop 8171, Gaithersburg, MD 20899, USA.
University of Maryland, Joint Quantum Institute, College Park, MD 20742, USA.
Metrologia. 2016;53(5). doi: 10.1088/0026-1394/53/5/a83.
Using a watt balance and a frequency comb, a mass-energy equivalence is derived. The watt balance compares mechanical power measured in terms of the meter, the second, and the kilogram to electrical power measured in terms of the volt and the ohm. A direct link between mechanical action and the Planck constant is established by the practical realization of the electrical units derived from the Josephson and the quantum Hall effects. By using frequency combs to measure velocities and acceleration of gravity, the unit of mass can be realized from a set of three defining constants: the Planck constant , the speed of light , and the hyperfine splitting frequency of Cs.
利用瓦特天平与频率梳,推导出质能等效关系。瓦特天平将以米、秒和千克为单位测量的机械功率与以伏特和欧姆为单位测量的电功率进行比较。通过实际实现由约瑟夫森效应和量子霍尔效应导出的电单位,建立了机械作用与普朗克常数之间的直接联系。通过使用频率梳来测量速度和重力加速度,质量单位可以由一组三个定义常数来实现:普朗克常数、光速以及铯的超精细分裂频率。