The imaging process in stellar interferometers is explained starting from first principles on wave propagation and diffraction. Wave propagation through turbulence is described in detail using Kolmogorov statistics. The impact of turbulence on the imaging process is discussed both for single telescopes and for interferometers. Correction methods (adaptive optics and fringe tracking) are presented including wavefront sensing/fringe sensing methods and closed loop operation. Instrumental techniques like beam combination and visibility measurements (modulus and phase) as well as Nulling and heterodyne interferometry are described. The book closes with examples of observing programmes linking the theory with individual astrophysical programmes.
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<p>Over the last decade, stellar interferometry has developed from a specialist tool to a mainstream observing technique, attracting scientists whose research benefits from milliarcsecond angular resolution. Stellar interferometry has become part of the astronomer’s toolbox, complementing single-telescope observations by providing unique capabilities that will advance astronomical research. </p><p>This carefully written book is intended to provide a solid understanding of the principles of stellar interferometry to students starting an astronomical research project in this field or to develop instruments and to astronomers using interferometry but who are not interferometrists per se. </p>Illustrated by excellent drawings and calculated graphs <ul><li>the imaging process in stellar interferometers is explained starting from first principles on light propagation and diffraction</li><li>wave propagation through turbulence is described in detail using Kolmogorov statistics</li><li>the impact of turbulence on the imaging process is discussed both for single telescopes and for interferometers</li><li>instrumental techniques like beam combination and array layout are described, and the requirements for delay lines are derived</li><li>visibility measurements (modulus and phase) through turbulence are analyzed and limitations are quantified</li><li>correction methods (fringe tracking and adaptive optics) are presented, discussing closed loop operation with a dual feed system.</li></ul><p>The book closes with examples of contemporary stellar interferometers and useful appendices on the Fourier transform and atmospheric transmission bands.</p>
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Destinos, gastos y plazos de envíoLibrería: GreatBookPrices, Columbia, MD, Estados Unidos de America
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Hardcover. Condición: new. Hardcover. Over the last decade, stellar interferometry has developed from a specialist tool to a mainstream observing technique, attracting scientists whose research benefits from milliarcsecond angular resolution. Stellar interferometry has become part of the astronomers toolbox, complementing single-telescope observations by providing unique capabilities that will advance astronomical research.This carefully written book is intended to provide a solid understanding of the principles of stellar interferometry to students starting an astronomical research project in this field or to develop instruments and to astronomers using interferometry but who are not interferometrists per se.Illustrated by excellent drawings and calculated graphsthe imaging process in stellar interferometers is explained starting from first principles on light propagation and diffraction,wave propagation through turbulence is described in detail using Kolmogorov statistics,the impact of turbulence on the imaging process is discussed both for single telescopes and for interferometers,instrumental techniques like beam combination and array layout are described, and the requirements for delay lines are derived,visibility measurements (modulus and phase) through turbulence are analyzed and limitations are quantified,correction methods (fringe tracking and adaptive optics) are presented, discussing closed loop operation with a dual feed system.The book closes with examples of contemporary stellar interferometers and useful appendices on the Fourier transform and atmospheric transmission bands. This carefully written book is intended to provide a solid understanding of the principles of stellar interferometry. Illustrated by excellent drawings and calculated graphs, it is aimed at students starting an astronomical research project in this field. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Nº de ref. del artículo: 9783642150272
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Buch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The imaging process in stellar interferometers is explained starting from first principles on wave propagation and diffraction. Wave propagation through turbulence is described in detail using Kolmogorov statistics. The impact of turbulence on the imaging process is discussed both for single telescopes and for interferometers. Correction methods (adaptive optics and fringe tracking) are presented including wavefront sensing/fringe sensing methods and closed loop operation. Instrumental techniques like beam combination and visibility measurements (modulus and phase) as well as Nulling and heterodyne interferometry are described. The book closes with examples of observing programmes linking the theory with individual astrophysical programmes. 364 pp. Englisch. Nº de ref. del artículo: 9783642150272
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Buch. Condición: Neu. Neuware -Over the last decade, stellar interferometry has developed from a specialist tool to a mainstream observing technique, attracting scientists whose research benefits from milliarcsecond angular resolution. Stellar interferometry has become part of the astronomer¿s toolbox, complementing single-telescope observations by providing unique capabilities that will advance astronomical research.This carefully written book is intended to provide a solid understanding of the principles of stellar interferometry to students starting an astronomical research project in this field or to develop instruments and to astronomers using interferometry but who are not interferometrists per se.Illustrated by excellent drawings and calculated graphsthe imaging process in stellar interferometers is explained starting from first principles on light propagation and diffractionwave propagation through turbulence is described in detail using Kolmogorov statisticsthe impact of turbulence on the imaging process is discussed both for single telescopes and for interferometersinstrumental techniques like beam combination and array layout are described, and the requirements for delay lines are derivedvisibility measurements (modulus and phase) through turbulence are analyzed and limitations are quantifiedcorrection methods (fringe tracking and adaptive optics) are presented, discussing closed loop operation with a dual feed system.The book closes with examples of contemporary stellar interferometers and useful appendices on the Fourier transform and atmospheric transmission bands.Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 364 pp. Englisch. Nº de ref. del artículo: 9783642150272
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Buch. Condición: Neu. Druck auf Anfrage Neuware - Printed after ordering - Over the last decade, stellar interferometry has developed from a specialist tool to a mainstream observing technique, attracting scientists whose research benefits from milliarcsecond angular resolution. Stellar interferometry has become part of the astronomer's toolbox, complementing single-telescope observations by providing unique capabilities that will advance astronomical research. This carefully written book is intended to provide a solid understanding of the principles of stellar interferometry to students starting an astronomical research project in this field or to develop instruments and to astronomers using interferometry but who are not interferometrists per se. Illustrated by excellent drawings and calculated graphs the imaging process in stellar interferometers is explained starting from first principles on light propagation and diffraction,wave propagation through turbulence is described in detail using Kolmogorov statistics,the impact of turbulence on the imaging process is discussed both for single telescopes and for interferometers,instrumental techniques like beam combination and array layout are described, and the requirements for delay lines are derived,visibility measurements (modulus and phase) through turbulence are analyzed and limitations are quantified,correction methods (fringe tracking and adaptive optics) are presented, discussing closed loop operation with a dual feed system.The book closes with examples of contemporary stellar interferometers and useful appendices on the Fourier transform and atmospheric transmission bands. Nº de ref. del artículo: 9783642150272
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