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Inverse Modeling / Gen Nakamura (2015)
Titre : Inverse Modeling : An introduction to the theory and methods of inverse problems and data assimilation Type de document : texte imprimé Auteurs : Gen Nakamura, Auteur ; Roland Potthast, Auteur Editeur : Bristol : Institute of physics publishing (IOP) Année de publication : 2015 Collection : IOP Expanding physics (Print), ISSN 2054-7315 Importance : 1 vol. (pagination multiple) Présentation : ill. en coul. , couv. ill en coul. Format : 26 cm ISBN/ISSN/EAN : 978-0-7503-1219-6 Note générale : ISBN : 978-0-7503-1219-6 (Print). - 0-7503-1219-X (Print). - ISBN : 978-0-7503-1218-9 (ebook). - 978-0-7503-1220-2 (mobi).- PPN 193131234 Langues : Anglais (eng) Tags : Problèmes inverses (équations différentielles) Processus stochastiques Inverse problems (Differential equations) Stochastic processes Index. décimale : 515.3 Calcul différentiel et équations différentielles Note de contenu : 1. Introduction . - 2. Functional analytic tools. - 3. Approaches to regularization. - 4. A stochastic view of inverse problems. - 5. Dynamical systems inversion and data assimilation. - 6. Programming of numerical algorithms and useful tools. - 7. Neural field inversion and kernel reconstruction. - 8. Simulation of wavers and fields. - 9. Nonlinear operators. - 10. Analysis: uniqueness, stability and convergence questions. - 11. Source reconstruction and magnetic tomography. - 12. Field reconstruction techniques. - 13. Sampling methods. - 14. Probe methods. - 15. Analytic continuation tests. - 16. Dynamical sampling and probe methods. - 17. Targeted observations and meta-inverse problems. - Références bibliographiques en fin de chapitre. Inverse Modeling : An introduction to the theory and methods of inverse problems and data assimilation [texte imprimé] / Gen Nakamura, Auteur ; Roland Potthast, Auteur . - Bristol : Institute of physics publishing (IOP), 2015 . - 1 vol. (pagination multiple) : ill. en coul. , couv. ill en coul. ; 26 cm. - (IOP Expanding physics (Print), ISSN 2054-7315) .
ISBN : 978-0-7503-1219-6
ISBN : 978-0-7503-1219-6 (Print). - 0-7503-1219-X (Print). - ISBN : 978-0-7503-1218-9 (ebook). - 978-0-7503-1220-2 (mobi).- PPN 193131234
Langues : Anglais (eng)
Tags : Problèmes inverses (équations différentielles) Processus stochastiques Inverse problems (Differential equations) Stochastic processes Index. décimale : 515.3 Calcul différentiel et équations différentielles Note de contenu : 1. Introduction . - 2. Functional analytic tools. - 3. Approaches to regularization. - 4. A stochastic view of inverse problems. - 5. Dynamical systems inversion and data assimilation. - 6. Programming of numerical algorithms and useful tools. - 7. Neural field inversion and kernel reconstruction. - 8. Simulation of wavers and fields. - 9. Nonlinear operators. - 10. Analysis: uniqueness, stability and convergence questions. - 11. Source reconstruction and magnetic tomography. - 12. Field reconstruction techniques. - 13. Sampling methods. - 14. Probe methods. - 15. Analytic continuation tests. - 16. Dynamical sampling and probe methods. - 17. Targeted observations and meta-inverse problems. - Références bibliographiques en fin de chapitre. Réservation
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Code-barres Cote Support Localisation Section Disponibilité Nom du donateur OCA-NI-009529 009529 Ouvrages / Books OCA Bib. Nice Mont-Gros NI-Salle de lecture-Ouvrages Disponible Modern Interferometry for Length Metrology / René Schödel (2018)
Titre : Modern Interferometry for Length Metrology : Exploring Limits and Novel Techniques Type de document : texte imprimé Auteurs : René Schödel, Auteur Editeur : Bristol : Institute of physics publishing (IOP) Année de publication : 2018 Collection : IOP Expanding physics (Print), ISSN 2054-7315 Importance : 1 vol. (pag. mult) Présentation : ill, couv ill. en coul. Format : 26 cm ISBN/ISSN/EAN : 978-0-7503-1576-0 Note générale : Bibliographie en fin de chap. - PPN 244413452 Langues : Anglais (eng) Tags : Interférométrie Longueur -- Mesure Interferometry Length measurement Index. décimale : 535.470 287 Interférence - Tests et mesures (Interférométrie) Note de contenu : 1. Practical realisation of the length by interferometry : general principles and limitations -- 1.1. A short history of the metre and the present definition -- 1.2. Realisation of the length by direct measurement of the light travelling time (time-of-flight measurement) -- 1.3. The basic concept of length measurement by interferometry -- 1.4. Optical frequency standards -- 1.5. Types of length measuring interferometers -- 1.6. General requirements and limitations in length measurements by interferometry Cont. -- 2. Large field imaging interferometry for the measurement of the length of bar shaped material measures -- 2.1. Introduction -- 2.2. Topography-based measurement of the interference phase and extraction of the fractional order of interference -- 2.3. Determination of the integer order of interference -- 2.4. Measurement of the air refractive index -- 2.5. Interferometer adjustment and limitations due to optical components and the light source -- 2.6. Effect of surface roughness and phase change on reflection -- 2.7. Wringing contact between a body and a platen -- 2.8. Double ended interferometry -- 2.9. PTB’s ultra precision interferometer?design for special tasks -- 2.10. The importance of the temperature measurement -- 2.11. Primary gauge block calibrations performed today --- 3. Fizeau interferometry for the sub-nm accurate realisation of sphere radii -- 3.1. A brief history -- 3.2. The measurement principle -- 3.3. Optical interference -- 3.4. Experimental implementation at PTB -- 3.5. Outlook --- 4. Laser interferometry for high resolution metrology in space -- 4.1. Introduction -- 4.2. Interferometric distance and tilt metrology -- 4.3. Space-based gravitational wave detection -- 4.4. Mapping Earth’s gravitational field using satellite-to-satellite tracking -- 4.5. Summary and outlook ---- 5. Interferometry in air with refractive index compensation -- 5.1. The index of refraction -- 5.2. Determining the intrinsic parameters -- 5.3. Dispersive intrinsic refractivity compensation -- 5.4. Air wavelength stabilisation -- 5.5. Conclusions ---- 6. Frequency comb based spectral interferometry and homodyne many-wavelength interferometry for distance measurements -- 6.1. Introduction to frequency comb lasers and their applications to dimensional metrology -- 6.2. Distance measurement based on cross-correlation -- 6.3. Evolution of cross-correlations at longer pulse propagation distances -- 6.4. Spectral interferometry -- 6.5. Mode-resolved homodyne interferometry -- 6.6. Recent developments and outlook --- 7. Distance measurements using mode-locked pulse lasers -- 7.1. Introduction -- 7.2. Comb-referenced multi-wavelength interferometer -- 7.3. Comb-based dispersive interferometry -- 7.4. Time-of-flight measurement by pulse-to-pulse cross-correlation -- 7.5. Time-of-flight measurement by dual-comb interferometry -- 7.6. Summary and outlook --- 8. Absolute distance measurement using frequency scanning interferometry -- 8.1. Introduction -- 8.2. Physical description of FSI interferometers -- 8.3. FSI analysis techniques -- 8.4. FSI hardware technology
--- 9. Picometre level displacement interferometry -- 9.1. Influences of the laser light source -- 9.2. Correction of the refractive index -- 9.3. Length-proportional error resulting for beam diffraction -- 9.4. Conclusion.Modern Interferometry for Length Metrology : Exploring Limits and Novel Techniques [texte imprimé] / René Schödel, Auteur . - Bristol : Institute of physics publishing (IOP), 2018 . - 1 vol. (pag. mult) : ill, couv ill. en coul. ; 26 cm. - (IOP Expanding physics (Print), ISSN 2054-7315) .
ISBN : 978-0-7503-1576-0
Bibliographie en fin de chap. - PPN 244413452
Langues : Anglais (eng)
Tags : Interférométrie Longueur -- Mesure Interferometry Length measurement Index. décimale : 535.470 287 Interférence - Tests et mesures (Interférométrie) Note de contenu : 1. Practical realisation of the length by interferometry : general principles and limitations -- 1.1. A short history of the metre and the present definition -- 1.2. Realisation of the length by direct measurement of the light travelling time (time-of-flight measurement) -- 1.3. The basic concept of length measurement by interferometry -- 1.4. Optical frequency standards -- 1.5. Types of length measuring interferometers -- 1.6. General requirements and limitations in length measurements by interferometry Cont. -- 2. Large field imaging interferometry for the measurement of the length of bar shaped material measures -- 2.1. Introduction -- 2.2. Topography-based measurement of the interference phase and extraction of the fractional order of interference -- 2.3. Determination of the integer order of interference -- 2.4. Measurement of the air refractive index -- 2.5. Interferometer adjustment and limitations due to optical components and the light source -- 2.6. Effect of surface roughness and phase change on reflection -- 2.7. Wringing contact between a body and a platen -- 2.8. Double ended interferometry -- 2.9. PTB’s ultra precision interferometer?design for special tasks -- 2.10. The importance of the temperature measurement -- 2.11. Primary gauge block calibrations performed today --- 3. Fizeau interferometry for the sub-nm accurate realisation of sphere radii -- 3.1. A brief history -- 3.2. The measurement principle -- 3.3. Optical interference -- 3.4. Experimental implementation at PTB -- 3.5. Outlook --- 4. Laser interferometry for high resolution metrology in space -- 4.1. Introduction -- 4.2. Interferometric distance and tilt metrology -- 4.3. Space-based gravitational wave detection -- 4.4. Mapping Earth’s gravitational field using satellite-to-satellite tracking -- 4.5. Summary and outlook ---- 5. Interferometry in air with refractive index compensation -- 5.1. The index of refraction -- 5.2. Determining the intrinsic parameters -- 5.3. Dispersive intrinsic refractivity compensation -- 5.4. Air wavelength stabilisation -- 5.5. Conclusions ---- 6. Frequency comb based spectral interferometry and homodyne many-wavelength interferometry for distance measurements -- 6.1. Introduction to frequency comb lasers and their applications to dimensional metrology -- 6.2. Distance measurement based on cross-correlation -- 6.3. Evolution of cross-correlations at longer pulse propagation distances -- 6.4. Spectral interferometry -- 6.5. Mode-resolved homodyne interferometry -- 6.6. Recent developments and outlook --- 7. Distance measurements using mode-locked pulse lasers -- 7.1. Introduction -- 7.2. Comb-referenced multi-wavelength interferometer -- 7.3. Comb-based dispersive interferometry -- 7.4. Time-of-flight measurement by pulse-to-pulse cross-correlation -- 7.5. Time-of-flight measurement by dual-comb interferometry -- 7.6. Summary and outlook --- 8. Absolute distance measurement using frequency scanning interferometry -- 8.1. Introduction -- 8.2. Physical description of FSI interferometers -- 8.3. FSI analysis techniques -- 8.4. FSI hardware technology
--- 9. Picometre level displacement interferometry -- 9.1. Influences of the laser light source -- 9.2. Correction of the refractive index -- 9.3. Length-proportional error resulting for beam diffraction -- 9.4. Conclusion.Réservation
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Code-barres Cote Support Localisation Section Disponibilité Nom du donateur OCA-SA-006298 SCH-50 Ouvrages / Books OCA Bib. Géoazur Sophia-Antipolis SA-Salle-A213-Ouvrages Sorti jusqu'au 31/10/2024