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1

Arnold, Dekker, Meer Freek D, Abrams Michael, Curran Paul, Schaepman Michael, Gomarasca Mario A, Hallikainen Martti, et al., eds. Satellite Radar Interferometry: Subsidence Monitoring Techniques. Dordrecht: Springer Netherlands, 2009.

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2

Hanssen, Ramon F. Radar interferometry: Data interpretation and error analysis. New York: Kluwer Academic, 2002.

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3

Radar interferometry: Data interpretation and error analysis. Dordrecht: Kluwer Academic, 2001.

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4

F, Merkle, National Optical Astronomy Observatories (U.S.), and European Southern Observatory, eds. NOAO-ESO Conference on High-Resolution Imaging by Interferometry: Ground-based interferometry at visible and infrared wavelengths, 15-18 March 1988, Garching bei München, F.R.G. : proceedings. Garching bei München: European Southern Observatory, 1988.

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5

ESO Conference on High-Resolution Imaging by Interferometry (2nd 1991 Garching bei München, Germany). ESO Conference on High-Resolution Imaging by Interferometry II: Ground-based interferometry at visible and infrared wavelengths : 15-18 October 1991, Garching bei München, Germany : proceedings. Garching bei München: European Southern Observatory, 1992.

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6

"Fringe 96" Workshop (1996 Zurich, Switzerland). ERS SAR interferometry: "Fringe 96" Workshop : Zurich, Switzerland, 30 September-2 October 1996. Noordwijk, The Netherlands: European Space Agency, ESA Publications Division, 1997.

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7

Harris, R. A. Envisat: The Michelson interferometer for passive atmospheric sounding, MIPAS : an instrument for atmospheric chemistry and climate research. Noordwijk, The Netherlands: ESA Publications Division, 2000.

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8

Symposium, International Astronomical Union. Galaxies and their constituents at the highest angular resolutions: IAU Symposium 205 : proceedings of the 24th General Assembly of the IAU held at Manchester, United Kingdom, 15-18 August 2000. San Francisco, Calif: Astronomical Society of the Pacific, 2001.

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9

Raspini, Federico, Francesca Cigna, Sandro Moretti, and Nicola Casagli, eds. Advanced Terrain Mapping of the Gioia Tauro Plain Calabria Region, Italy. Florence: Firenze University Press, 2011. http://dx.doi.org/10.36253/978-88-6655-022-8.

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In the framework of the Terrafirma project, Persistent Scatterers Interferometry (PSI) has be used for mapping land subsidence at basin scale in Gioia Tauro plain (Italy). The investigated area is built over unconsolidated fine-grained sediments, where the increasing groundwater demands for irrigation have caused the natural sediment consolidation to progressively accelerate. Both historical (1992-2001; ERS1/2 images) and recent (2002-2006; ENVISAT images) scenarios are analyzed to solve the spatial variability and temporal evolution of ground displacements affecting the plain. The results show deformation rates as high as 10-12 mm/yr in 1992-2007, with highest velocities occurred between 1992 and 2000 within the central part of the basin, in the area of Rizziconi (5 km ESE of Gioia Tauro). The outcomes of this PSI study could support the future improvement of groundwater management and the implementation of best strategies for land use planning and sustainable use of groundwater resources.
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10

European Conference on Synthetic Aperture Radar (5th 2004 Ulm, Germany). EUSAR 2004: Proceedings : 5th European Conference on Synthetic Aperture Radar : May 25-27, 2004, Ulm, Germany. Berlin: VDE-Verlag, 2004.

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11

G, Robertson J., Tango William J, and International Union for Radio Science., eds. Very high angular resolution imaging: Proceedings of the 158th Symposium of the International Astronomical Union, held at the Women's College, University of Sydney, Australia, 11-15 January 1993. Dordrecht [The Netherlands]: Kluwer Academic, 1994.

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12

Symposium, International Astronomical Union. Galaxies and their constituents at the highest angular resolution: IAU Symposium 205 : proceedings of the 24th General Assembly of the IAU held at Manchester, United Kingdom, 15-18 August 2000. San Francisco, Calif: Published on behalf of IAU by Astronomical Society of the Pacific, 2001.

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13

European, Conference on Synthetic Aperture Radar (1996 Königswinter Germany). EUSAR '96, European Conference on Synthetic Aperture Radar, 26-28 March 1996, Königswinter, Germany. Berlin: VDE-Verlag, 1996.

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14

European Conference on Synthetic Aperture Radar (5th 2004 Ulm, Germany). EUSAR 2004: Proceedings : 5th European Conference on Synthetic Aperture Radar : May 25-27, 2004, Ulm, Germany. Berlin: VDE-Verlag, 2004.

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15

Italy) FRINGE Workshop (2003 Frascati. Proceedings of FRINGE 2003 Workshop: 1-5 December 2003, ESA/ESRIN, Frascati, Italy. Noordwijk, The Netherlands: ESA Publications Division, 2004.

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16

Vreeburg, J. P. B. Fluid physics instrumentation study: Final report. Part IV : Executive summary, conclusions and recommendations. Amsterdam: National Aerospace Laboratory, 1985.

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17

Adrian, Podoleanu, University of Kent. School of Physical Sciences, Marie Curie Early Stage Training Consortium, European Commission. Marie Curie Actions, and SPIE (Society), eds. 1st Canterbury Workshop on Optical Coherence Tomography and Adaptive Optics: 8-10 September 2008, Canterbury, Kent, United Kingdom. Bellingham, Wash: SPIE, 2008.

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18

Regan, Mercer Carolyn, and United States. National Aeronautics and Space Administration., eds. Laser interferometric measurement of ion electrode shape and charge exchange erosion. [Washington, DC]: National Aeronautics and Space Administration, 1991.

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19

D, Reasenberg R., Society of Photo-optical Instrumentation Engineers., European Southern Observatory, American Astronomical Society, Astronomical Society of the Pacific., Canadian Astronomical Society, and Conference on Astronomical Interferometry (1998 : Kona, Hawaii), eds. Astronomical interferometry: 20-24 March 1998, Kona, Hawaii. Bellingham, Wash: SPIE, 1998.

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20

Principles Of Stellar Interferometry. Springer, 2011.

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21

Glindemann, Andreas. Principles of Stellar Interferometry. Springer, 2013.

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22

Cohadon, Pierre-François, Jack Harris, Florian Marquardt, and Leticia Cugliandolo, eds. Quantum Optomechanics and Nanomechanics. Oxford University Press, 2020. http://dx.doi.org/10.1093/oso/9780198828143.001.0001.

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The Les Houches Summer School 2015 covered the emerging fields of cavity optomechanics and quantum nanomechanics. Optomechanics is flourishing and its concepts and techniques are now applied to a wide range of topics. Modern quantum optomechanics was born in the late 70s in the framework of gravitational wave interferometry, initially focusing on the quantum limits of displacement measurements. Carlton Caves, Vladimir Braginsky, and others realized that the sensitivity of the anticipated large-scale gravitational-wave interferometers (GWI) was fundamentally limited by the quantum fluctuations of the measurement laser beam. After tremendous experimental progress, the sensitivity of the upcoming next generation of GWI will effectively be limited by quantum noise. In this way, quantum-optomechanical effects will directly affect the operation of what is arguably the world’s most impressive precision experiment. However, optomechanics has also gained a life of its own with a focus on the quantum aspects of moving mirrors. Laser light can be used to cool mechanical resonators well below the temperature of their environment. After proof-of-principle demonstrations of this cooling in 2006, a number of systems were used as the field gradually merged with its condensed matter cousin (nanomechanical systems) to try to reach the mechanical quantum ground state, eventually demonstrated in 2010 by pure cryogenic techniques and a year later by a combination of cryogenic and radiation-pressure cooling. The book covers all aspects—historical, theoretical, experimental—of the field, with its applications to quantum measurement, foundations of quantum mechanics and quantum information. Essential reading for any researcher in the field.
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23

Maggiore, Michele. Stochastic backgrounds of cosmological origin. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198570899.003.0013.

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Characteristic frequency of relic GWs. Production mechanisms of GWs in the early universe: preheating, phase transitions, cosmic strings, alternatives to inflation. Bounds on primordial GW backgrounds: nucleosynthesis bound, bounds from CMB, observational limits at interferometers.
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24

Fringe 96 workshop, ERS SAR interferometry. Noordwijk, Netherlands: ESA Publications Division, ESTEC, 1997.

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25

Hanssen, Ramon F. Radar Interferometry: Data Interpretation and Error Analysis. Springer, 2014.

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26

Hanssen, Ramon F. Radar Interferometry: Data Interpretation and Error Analysis. Springer, 2010.

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27

1956-, Lämmerzahl C., Everitt, C. W. F. 1934-, and Hehl F. W. 1937-, eds. Gyros, clocks, interferometers: Testing relativistic gravity in space. New York: Springer-Verlag, 2001.

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28

Interferometry in Optical Astronomy (SPIE Conference Proceedings). SPIE Society of Photo-Optical Instrumentation Engi, 2000.

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29

Furst, Eric M., and Todd M. Squires. Interferometric tracking. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199655205.003.0006.

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The purpose of this chapter is to present a survey of passive microrheology techniques that are important complements to more widely used particle tracking and light scattering methods. Such methods include back focal plane interferometry and extensions of particle tracking to measure the rotation of colloidal particles. Methods of passive microrheology using back focal plane interferometry are presented, including the experimental design and detector sensitivity and limits in frequency bandwidth and spatial resolution. The Generalized Stokes Einstein relation is derived from linear response theory of the particle position power spectrum and complex susceptibility. Applications of interoferometric tracking include high frequency microrheology and two-point measurements. Lastly, the chapter includes a discussion of rotational passive microrheology and the rotational GSER.
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30

(Editor), S. Costa, S. Albergo (Editor), A. Insolia (Editor), and C. Tuve (Editor), eds. Measuring the Size of Things in the Universe: Hbt Interferometry and Heavy Ion Physics : Proceedings of Cris '98 2nd Catania Relativistic Ion Studies Acicastello, Italy, June 8-12, 1998. World Scientific Publishing Company, 1999.

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31

Hicks, Brian. Nulling Interferometers for Space-based High-Contrast Visible Imaging and Measurement of Exoplanetary Environments. Springer, 2016.

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32

Hicks, Brian. Nulling Interferometers for Space-based High-Contrast Visible Imaging and Measurement of Exoplanetary Environments. Springer, 2013.

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33

Moffat, John W. The Shadow of the Black Hole. Oxford University Press, 2020. http://dx.doi.org/10.1093/oso/9780190650728.001.0001.

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The author visits one of the two Laser Interferometer Gravitational- Wave Observatory (LIGO) sites in the United States, at Hanford, Washington. This is where scientists are detecting gravitational waves generated by faraway merging black holes and neutron stars. He meets the people who work there and has discussions with some of them. The director gives him a tour of the LIGO experimental installation, describing the work, the technological details of the apparatus, and answers his questions. On the final day of the visit, the author gives a talk to the LIGO group on gravitational waves and on an alternative gravitational theory.
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34

N. M.) Astronomical Society of the Pacific Meeting 1998 (Albuquerque. Catching the Perfect Wave: Adaptive Optics & Interfermometry in the 21st Century (Conference Series Proceedings, Vol 174). Astronomical Society of the Pacific, 1999.

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35

R, Restaino Sergio, Junor William, Duric Nebojsa, and Astronomical Society of the Pacific. Meeting, eds. Catching the perfect wave: Adaptive optics and interferometry in the 21st century : proceedings of a symposium held as a part of the 110th Annual Meeting of the ASP, Albuquerque, New Mexico, USA, 28 June-1 July 1998. San Francisco, Calif: Astronomical Society of the Pacific, 1999.

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36

1937-, Léna Pierre, Quirrenbach Andreas, Society of Photo-optical Instrumentation Engineers., European Southern Observatory, and DFM Engineering, eds. Interferometry in optical astronomy: 27-29 March 2000, Munich, Germany. Bellingham, Wash: SPIE--the International Society for Optical Engineering, 2000.

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37

United States. National Aeronautics and Space Administration., ed. Holographic interferometry with an injection seeded Nd:YAG laser and two reference beams. [Washington, DC]: National Aeronautics and Space Administration, 1989.

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38

(Editor), C. Lämmerzahl, C.W.F. Everitt (Editor), and F. W. Hehl (Editor), eds. Gyros, Clocks, Interferometers...: Testing Relativistic Gravity in Space (Lecture Notes in Physics). Springer, 2001.

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39

1939-, Breckinridge Jim B., American Astronomical Society, and Society of Photo-optical Instrumentation Engineers., eds. Amplitude and intensity spatial interferometry: 14-16 February 1990, Tucson, Arizona. Bellingham, Wash., USA: SPIE--the International Society for Optical Engineering, 1990.

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40

D, Monnier John, Schöller Markus, Danchi William Clifford, American Astronomical Society, and Society of Photo-optical Instrumentation Engineers., eds. Advances in stellar interferometry: 25-30 May 2006, Orlando, Florida, USA. Bellingham, Wash: SPIE, 2006.

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41

Hanssen, R. F. Radar Interferometry - Data Interpretation and Error Analysis (Remote Sensing and Digital Image Processing, Volume 2) (Remote Sensing and Digital Image Processing). Springer, 2001.

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42

Merkle, F. Noao-Eso Conference on High-Resolution Imaging by Interferometry: Ground-Based Interferometry at Visible and Infrared Wavelenghts, 15-18 March 1988, G (Eso Conference and Workshop Proceedings). European Southern Observatory, 1988.

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43

A, Traub Wesley, Society of Photo-optical Instrumentation Engineers., and International Commission for Optics, eds. Interferometry for optical astronomy II: 22-28 August 2002, Waikoloa, Hawaii, USA. Bellingham, Wash: SPIE, 2003.

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44

A, Traub Wesley, Society of Photo-optical Instrumentation Engineers., and American Astronomical Society, eds. New frontiers in stellar interferometry: 21-25 June, 2004, Glasgow, Scotland, United Kingdom. Bellingham, Wash: SPIE, 2004.

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45

United States. National Aeronautics and Space Administration., ed. #5 technical report on two color holographic interferometry for microgravity application: Period from April 1, 1993 to October 1, 1993. [Washington, DC: National Aeronautics and Space Administration, 1993.

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46

Vigdor, Steven E. The Dark Side. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198814825.003.0006.

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Chapter 6 deals with the remaining mysteries in cosmology—dark matter, dark energy, and inflationary expansion—and the experiments aimed at solving them. It reviews the evidence for dark matter, and experiments to detect the microscopic particles proposed as its constituents: weakly interacting massive particles and invisible axions. Contrasts are drawn between the failure to understand the scale of dark energy theoretically and the ambitious new survey telescopes, such as the Large Synoptic Survey Telescope (or LSST), that aim to constrain its equation of state. The theoretical concepts and possible experimental signatures of cosmic inflation are described. Searches for possible imprints from primordial inflation-induced gravitational waves on the polarization of the cosmic microwave background (CMB polarization) are discussed in the context of the pioneering first detection by the Laser Interferometer Gravitational-Wave Observatory (or LIGO) of gravitational waves from distant black-hole mergers. Philosophical questions regarding the falsifiability of inflation are raised.
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47

Proceedings of microscopy, holography, and interferometry in biomedicine: 1-3 September 1993, Budapest, Hungary. Bellingham, Wash: SPIE, 1994.

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48

ERS SAR interferometry: "Fringe 96" Workshop : Zurich, Switzerland, 30 September-2 October 1996 (SP). European Space Agency, ESA Publications Division, 1997.

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49

Halina, Podbielska, and Society of Photo-optical Instrumentation Engineers., eds. Proceedings of holography, interferometry, and optical pattern recognition in biomedicne II: 23-24 January 1992, Los Angeles, California. Bellingham, Wash., USA: SPIE, 1992.

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50

Halina, Podbielska, and Society of Photo-optical Instrumentation Engineers., eds. Proceedings of holography, interferometry, and optical pattern recognition in biomedicine: 21-22 January 1991, Los Angeles, California. Bellingham, Wash: SPIE, 1991.

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