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Quantum metrology: foundation of units and measurements

The International System of Units (SI) is the world's most widely used system of measurement, used every day in commerce and science, and is the modern form of the metric system. It currently comprises the meter (m), the kilogram (kg), the second (s), the ampere (A), the kelvin (K), the candela...

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Detalles Bibliográficos
Autores principales: Goebel, Ernst O, Siegner, Uwe
Lenguaje:eng
Publicado: Wiley-VCH 2015
Materias:
Acceso en línea:http://cds.cern.ch/record/2244773
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author Goebel, Ernst O
Siegner, Uwe
author_facet Goebel, Ernst O
Siegner, Uwe
author_sort Goebel, Ernst O
collection CERN
description The International System of Units (SI) is the world's most widely used system of measurement, used every day in commerce and science, and is the modern form of the metric system. It currently comprises the meter (m), the kilogram (kg), the second (s), the ampere (A), the kelvin (K), the candela (cd) and the mole (mol)). The system is changing though, units and unit definitions are modified through international agreements as the technology of measurement progresses, and as the precision of measurements improves. The SI is now being redefined based on constants of nature and their realization by quantum standards. Therefore, the underlying physics and technologies will receive increasing interest, and not only in the metrology community but in all fields of science. This book introduces and explains the applications of modern physics concepts to metrology, the science and the applications of measurements. A special focus is made on the use of quantum standards for the realization of the forthcoming new SI (the international system of units). The basic physical phenomena are introduced on a level which provides comprehensive information for the experienced reader but also provides a guide for a more intense study of these phenomena for students.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-22447732021-04-21T19:20:11Zhttp://cds.cern.ch/record/2244773engGoebel, Ernst OSiegner, UweQuantum metrology: foundation of units and measurementsEngineeringThe International System of Units (SI) is the world's most widely used system of measurement, used every day in commerce and science, and is the modern form of the metric system. It currently comprises the meter (m), the kilogram (kg), the second (s), the ampere (A), the kelvin (K), the candela (cd) and the mole (mol)). The system is changing though, units and unit definitions are modified through international agreements as the technology of measurement progresses, and as the precision of measurements improves. The SI is now being redefined based on constants of nature and their realization by quantum standards. Therefore, the underlying physics and technologies will receive increasing interest, and not only in the metrology community but in all fields of science. This book introduces and explains the applications of modern physics concepts to metrology, the science and the applications of measurements. A special focus is made on the use of quantum standards for the realization of the forthcoming new SI (the international system of units). The basic physical phenomena are introduced on a level which provides comprehensive information for the experienced reader but also provides a guide for a more intense study of these phenomena for students.Wiley-VCHoai:cds.cern.ch:22447732015
spellingShingle Engineering
Goebel, Ernst O
Siegner, Uwe
Quantum metrology: foundation of units and measurements
title Quantum metrology: foundation of units and measurements
title_full Quantum metrology: foundation of units and measurements
title_fullStr Quantum metrology: foundation of units and measurements
title_full_unstemmed Quantum metrology: foundation of units and measurements
title_short Quantum metrology: foundation of units and measurements
title_sort quantum metrology: foundation of units and measurements
topic Engineering
url http://cds.cern.ch/record/2244773
work_keys_str_mv AT goebelernsto quantummetrologyfoundationofunitsandmeasurements
AT siegneruwe quantummetrologyfoundationofunitsandmeasurements