Skip to main content

PROMISING BENEFITS OF AN SELF-UPDATING (U)DCC APPLICATION EXAMPLE: THE QUANTUM-BASED PASCAL

Tom Moses Rubin, Thomas Bock, Matthias Bernien

Abstract

The DCC enables an updatable and thus improvable uncertainty budget. A direct benefit of the updatable DCC (UDCC) for the device under test (DUT) and thus for the end users would be the transfer of improvements with respect to the uncertainties of the primary standards. An illustrative application example is the new realization of the Pascal via quantum-based methods, such as primary standards using Fabry-Perot (FP) refractometry. This novel realization is based on traceability by means of frequency measurements and it is expected that the uncertainties of the relevant fundamental quantities, such as the polarizability and virial coefficients of the gases used, will improve noticeably on a regular basis over the next years. The resulting reduction in the uncertainties of all corresponding primary standards can be passed on directly to the end user due to the advantages of the machine-readable (and potentially machine-interpretable) digital calibration certificate which makes it well updatable.

Keywords
updatable DCC, UDCC, machine-interpretable, improvable uncertainties, redefined SI, quantum-based Pascal
Download
IMEKO-TC6-2022-040.pdf
DOI
10.21014/tc6-2022.040
IMEKO TC
TC6 - Digitalization

Event details

Event
M4Dconf2022
Email
sascha.eichstaedt@ptb.de
Place
Berlin, GERMANY
Time
19 September 2022 - 21 September 2022
Website
https://m4dconf2022.ptb.de

Back to the proceedings