A macroscopic mass from quantum mechanics in an integrated approach

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作者
Frank C. Seifert
Alireza R. Panna
I-Fan Hu
Lorenz H. Keck
Leon S. Chao
Shamith U. Payagala
Dean G. Jarrett
Chieh-I Liu
Dipanjan Saha
Randolph E. Elmquist
Stephan Schlamminger
Albert F. Rigosi
David B. Newell
Darine Haddad
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[1] National Institute of Standards and Technology (NIST),Department of Physics
[2] University of Maryland,Department of Chemistry and Biochemistry
[3] Joint Quantum Institute,undefined
[4] National Taiwan University,undefined
[5] University of Maryland,undefined
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The revision of the International System of Units (SI) on May 20th, 2019, has enabled new improved experiments to consolidate and simplify mechanical and quantum electrical metrology. Here, we present the direct measurement between a macroscopic mass and two quantum standards in a single experiment, in which the current used to levitate a mass passes through a graphene quantum Hall standard. The Josephson effect voltage is compared directly to the resulting quantum Hall effect voltage. We demonstrate this measurement with the use of graphene quantum Hall arrays for scaling in resistance with improved uncertainty and higher current level.
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