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Frequency Standards and Metrology

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Cover of 'Frequency Standards and Metrology'

Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 New Looks at Old Ideas
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    Chapter 2 Frequency Metrology and the Fundamental Physical Constants
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    Chapter 3 Coherent Spectroscopy on a Single Atomic System at Rest in Free Space III
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    Chapter 4 Use and Availability of the Frequency Standards
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    Chapter 5 Advanced Applications of Frequency Standards
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    Chapter 6 In Search of the Best Clock — an Update
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    Chapter 7 Comparison of Primary Frequency Standards
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    Chapter 8 Established Microwave Frequency Standards
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    Chapter 9 A Point of View on the Accuracy Performances and on the Prospects of Improvement of Primary Cesium Beam Frequency Standards
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    Chapter 10 The Accuracy of Commercial Cesium Beam Frequency Standards
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    Chapter 11 Reproducibility of H Maser Standards
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    Chapter 12 Advances in the Theory of Gas-Cell Atomic Frequency Standards
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    Chapter 13 Presentation of the Session Entitled “New Standards”
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    Chapter 14 High Accuracy Spectroscopy of Stored Ions
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    Chapter 15 Mg Beam Frequency Standard
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    Chapter 16 Introduction to Cold Hydrogen Masers
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    Chapter 17 The Cold Hydrogen Maser
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    Chapter 18 Performance of the UBC Cryogenic Hydrogen Maser
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    Chapter 19 Quantum Scattering of Atomic Hydrogen from the Surface of Liquid Helium
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    Chapter 20 Influence of Low Magnetic Field on Pumping Efficiency in an Optically Pumped Cesium Beam Resonator
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    Chapter 21 An Optically Pumped Primary Frequency Standard
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    Chapter 22 Design of an Optically Pumped Cs Laboratory Frequency Standard
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    Chapter 23 Preliminary Results and Some Considerations on Optically Pumped Cesium Beam Frequency Standard
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    Chapter 24 Experimental Results on an Optically Pumped Cs Frequency Standard
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    Chapter 25 Temperature Measurements of Laser Cooled Cesium Atoms
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    Chapter 26 Local Oscillators — Introductory Remarks
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    Chapter 27 Stability of Frequency Locked Loops
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    Chapter 28 1/f Noise in Oscillators: Theoretical and Experimental Progresses
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    Chapter 29 RF Local Oscillators for Future Frequency Standards
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    Chapter 30 Ultra-Stable Cavity-Stabilized Lasers with Subhertz Linewidth
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    Chapter 31 Low-Noise and Stable LO’s for Deep Space Applications
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    Chapter 32 Progress in Infrared Frequency Synthesis
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    Chapter 33 Coherent Frequency Measurements of the Hfs-Resolved Methane Line
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    Chapter 34 Phase-Locked Frequency Chains to 130 THz at NRC
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    Chapter 35 Direct Comparison of the Characteristics of Optical and Hydrogen Frequency Standards
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    Chapter 36 The Physics of Optical Frequency Standards Using Saturation Methods
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    Chapter 37 Double-Mode He-Ne/CH 4 Laser Stabilized by Methane Resonances with Relative Width of 10 −11
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    Chapter 38 State-of-the-Art for High Accuracy Frequency Standards in the 28 THz Range Using Saturated Absorption Resonances of OsO 4 and CO 2
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    Chapter 39 Solid State Lasers — Introduction
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    Chapter 40 Narrow-Linewidth Operation of Diode-Laser-Pumped Nonplanar Ring Oscillators
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    Chapter 41 Optical Stabilization of Semiconductor Lasers
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    Chapter 42 Frequency Stabilization of Highly Coherent AlGaAs Diode Lasers
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    Chapter 43 Frequency Control of Semiconductor Lasers
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    Chapter 44 Recent Progress in the Control of the Motion of Atomic Beams by Laser Fields
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    Chapter 45 Atoms Laser-Cooled Below the Doppler-Cooling Limit
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    Chapter 46 High-Contrast, High-Resolution Single Recoil Component Ramsey Fringes in Ca
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    Chapter 47 Obtaining of Supernarrow Saturated Absorption Resonances on Cold Particles and Their Use for Optical Frequency Standards
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    Chapter 48 Laser Cooling in Calcium and Magnesium Atomic Beams
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    Chapter 49 Introduction to the Session on Trapped Ions
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    Chapter 50 Hg + Single Ion Spectroscopy
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    Chapter 51 Lifetime Measurements of Metastable States in Ions
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    Chapter 52 Nonlinear Effects in Trapped Three-Level Ions
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    Chapter 53 New Frequency Standards Based on Yb +
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    Chapter 54 Laser Spectroscopy of a Single Barium Ion Using “Shelving”
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    Chapter 55 Frequency Standards Utilizing Penning Traps
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    Chapter 56 The Interferometric Detection of Gravitational Waves — a Status Report
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    Chapter 57 Relativity, Pulsar Time, and Atomic Time
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    Chapter 58 Testing Spatial Isotropy Using Optically-Pumped 199 Hg and 201 Hg
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    Chapter 59 Squeezed States, Interferometric Limits and Back-Action Evasion
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    Chapter 60 Mass Ratio Spectroscopy and the Proton’s Atomic Mass
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    Chapter 61 The Physics of Circular Atoms and the Measurement of the Rydberg Constant
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    Chapter 62 Determination of the Rydberg Constant by Doppler-Free Two-Photon Spectroscopy of Atomic Hydrogen Rydberg States
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    Chapter 63 The Primary Cesium Atomic Clocks of the PTB
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    Chapter 64 Metrological Parameters of the Primary Cesium Beam Frequency Standards in the National Time and Frequency Standard of the USSR
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    Chapter 65 Work on Cesium Standards at NRC
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    Chapter 66 Optical Pumping with Finite-Linewidth Lasers: Predictions for the Optically Pumped Cesium Beam Frequency Standard
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    Chapter 67 Work on Primary Cesium Beam Frequency Standard at CRL
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    Chapter 68 Improvement and Reevaluation of Chinese Primary Frequency Standard
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    Chapter 69 Preliminary Results on Small Optically Pumped Cesium Resonator
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    Chapter 70 Determining the Velocity Distribution in Cesium Beams from the Response to a Microwave Pulse
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    Chapter 71 Physical Problems Determining the Reliability of the Classical Microwave Frequency Standards
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    Chapter 72 Difference Frequency in Two Isotopes Atomic Beam Magnetic Resonance Apparatus as Candidate for Frequency Standard
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    Chapter 73 Studies and Developments of H-Masers at LHA
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    Chapter 74 Hydrogen Maser Auto-Tuning Systems
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    Chapter 75 Work on Hydrogen Maser
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    Chapter 76 Advanced Atomic Hydrogen Masers
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    Chapter 77 Recent Progress in Oscillating Compact Hydrogen Masers [1]
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    Chapter 78 Shapes of Storage Bulbs for Hydrogen Masers for Maximum Filling Factor
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    Chapter 79 H Maser and Rb Work in Romania
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    Chapter 80 Collisions of Atoms in Microwave and Laser Fields
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    Chapter 81 Temperature of Mercury Ions Stored in an R.F. Cylindrical Trap
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    Chapter 82 A High Stability Oscillator Based on a Sapphire Loaded Superconducting Cavity Resonator
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    Chapter 83 Recent Scientific Results at the Istituto di Radioastronomia
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    Chapter 84 The Time and Frequency System at the Matera Space Geodesy Center
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    Chapter 85 Optical Pumping of Rubidium Vapor with Laser-Diodes: Application to Coherent Optical Communications
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    Chapter 86 Improvements in Short- and Long-Term Frequency Stabilities of Diode Laser Pumped Rubidium Atomic Clock
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    Chapter 87 Efficient Frequency Noise Reduction of GaAIAs Laser Diodes by Negative Electronic Feedback
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    Chapter 88 Some Applications of Extended-Cavity Semiconductor Lasers
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    Chapter 89 Ultra-Narrow Linewidth of Optically Self-Locked Diode Lasers
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    Chapter 90 Manipulation of Metastable Helium with a LNA Laser
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    Chapter 91 Quantitative Study of Laser Cooling in a Penning Trap
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    Chapter 92 Laser Cooling and Resonant Transport of MG+ Ions in a Penning Trap
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    Chapter 93 Trapped Yb + as a Potential Optical Frequency Standard
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    Chapter 94 Kinetic Energy and Spatial Distribution of Ion Clouds in Paul Traps
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    Chapter 95 Tuning Characteristic of 543 nm Internal Mirror He-Ne Laser for Frequency Stabilization
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    Chapter 96 Double-Mode CO 2 Laser with Complex Resonator for Frequency Standards and Superhigh Resolution Spectroscopy
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    Chapter 97 Laser Frequency Measurement at NPL
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    Chapter 98 Saturation Spectroscopy with the NH 3 Laser
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    Chapter 99 OsO 4 Molecular Beam for High Accuracy Frequency Standard
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    Chapter 100 He-Ne Laser at 612 nm Stabilized to 127 I 2 Using FM Spectroscopy
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    Chapter 101 Frequency Stabilization of a 543.5 nm Wavelength He-Ne Laser to an Iodine Absorption Line
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    Chapter 102 Measurement of Isotope Shift in Optical Transitions of Atomic Oxygen
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    Chapter 103 Selective Electron Attachment of SF 6 Molecules in Collision with Xe(nf) Rydberg Atoms in a R.F. Quadrupole Trap and Correlative Effects on SF 6 − Ions Lifetime
Overall attention for this book and its chapters
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Title
Frequency Standards and Metrology
Published by
Springer Berlin Heidelberg, December 2012
DOI 10.1007/978-3-642-74501-0
ISBNs
978-3-64-274503-4, 978-3-64-274501-0
Editors

Marchi, Andrea

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 11 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United Kingdom 1 9%
Unknown 10 91%

Demographic breakdown

Readers by professional status Count As %
Student > Postgraduate 3 27%
Student > Ph. D. Student 2 18%
Researcher 2 18%
Lecturer 1 9%
Student > Master 1 9%
Other 0 0%
Unknown 2 18%
Readers by discipline Count As %
Physics and Astronomy 6 55%
Engineering 2 18%
Chemistry 1 9%
Unknown 2 18%