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Related papers: In-flight Diagnostics in LISA Pathfinder

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The Laser Interferometer Space Antenna (LISA), an ESA L-class mission, is designed to detect gravitational waves in the millihertz frequency band, with operations expected to begin in the next decade. LISA will enable studies of…

Instrumentation and Methods for Astrophysics · Physics 2024-12-31 Niklas Houba , Jean-Baptiste Bayle , Michele Vallisneri

The Low Frequency Instrument (LFI) is an array of cryogenically cooled radiometers on board the Planck satellite, designed to measure the temperature and polarization anisotropies of the cosmic microwave backgrond (CMB) at 30, 44 and 70…

Instrumentation and Methods for Astrophysics · Physics 2010-01-27 M. Tomasi , B. Cappellini , A. Gregorio , F. Colombo , M. Lapolla , L. Terenzi , G. Morgante , M. Bersanelli , R. C. Butler , S. Galeotta , N. Mandolesi , M. Maris , A. Mennella , L. Valenziano , A. Zacchei

We give the calibration and scientific performance parameters of the Planck Low Frequency Instrument (LFI) measured during the ground cryogenic test campaign. These parameters characterise the instrument response and constitute our best…

The Laser Interferometer Space Antenna (LISA) will open a rich discovery space in the milli-Hertz gravitational wave band. In addition to the anticipated signals from many millions of binary systems, this band may contain new and previously…

General Relativity and Quantum Cosmology · Physics 2019-01-16 Travis Robson , Neil J. Cornish

We suggest that LISA Pathfinder could be used to subject TEVES, and in particular the non-relativistic MOND phenomenology it incorporates, to a direct, controlled experimental test, in just a few years' time. The basic concept is to fly…

Cosmology and Nongalactic Astrophysics · Physics 2010-01-11 Christian Trenkel , Steve Kemble , Neil Bevis , Joao Magueijo

The future space-based gravitational wave observatory LISA will consist of a constellation of three spacecraft in a triangular constellation, connected by laser interferometers with 2.5 million-kilometer arms. Among other challenges, the…

General Relativity and Quantum Cosmology · Physics 2022-04-27 Quentin Baghi , James Ira Thorpe , Jacob Slutsky , John Baker

The Space Technology 7 Disturbance Reduction System (ST7-DRS) is a NASA technology demonstration payload that operated from January 2016 through July of 2017 on the European Space Agency's LISA Pathfinder spacecraft. The joint goal of the…

Instrumentation and Methods for Astrophysics · Physics 2018-11-21 G Anderson , J Anderson , M Anderson , G Aveni , D Bame , P Barela , K Blackman , A Carmain , L Chen , M Cherng , S Clark , M Connally , W Connolly , D Conroy , M Cooper , C Cutler , J D'Agostino , N Demmons , E Dorantes , C Dunn , M Duran , E Ehrbar , J Evans , J Fernandez , G Franklin , M Girard , J Gorelik , V Hruby , O Hsu , D Jackson , S Javidnia , D Kern , M Knopp , R Kolasinski , C Kuo , T Le , I Li , O Liepack , A Littlefield , P Maghami , S Malik , L Markley , R Martin , C Marrese-Reading , J Mehta , J Mennela , D Miller , D Nguyen , J O'Donnell , R Parikh , G Plett , T Ramsey , T Randolph , S Rhodes , A Romero-Wolf , T Roy , A Ruiz , H Shaw , J Slutsky , D Spence , J Stocky , J Tallon , I Thorpe , W Tolman , H Umfress , R Valencia , C Valerio , W Warner , J Wellman , P Willis , J Ziemer , J Zwahlen , M Armano , H Audley , J Baird , P Binetruy , a M Born , D Bortoluzzi , E Castelli , A Cavalleri , A Cesarini , A M Cruise , K Danzmann , M de Deus Silva , I Diepholz , G Dixon , R Dolesi , L Ferraioli , V Ferroni , E D Fitzsimons , M Freschi , L Gesa , F Gibert , D Giardini , R Giusteri , C Grimani , J Grzymisch , I Harrison , G Heinzel , M Hewitson , D Hollington , D Hoyland , M Hueller , H Inchauspe , O Jennrich , P Jetzer , N Karnesis , B Kaune , N Korsakova , C J Killow , J A Lobo , I Lloro , L Liu , J P Lopez-Zaragoza , R Maarschalkerweerd , D Mance , N Meshksar , V Martin , L Martin-Polo , J Martino , F Martin-Porqueras , I Mateos , P W McNamara , J Mendes , L Mendes , M Nofrarias , S Paczkowski , M Perreur-Lloyd , A Petiteau , P Pivato , E Plagnol , J Ramos-Castro , J Reiche , D I Robertson , F Rivas , G Russano , C F Sopuerta , T Sumner , D Texier , D Vetrugno , S Vitale , G Wanner , H Ward , P J Wass , W J Weber , L Wissel , A Wittchen , P Zweifel

In the context of the Laser Interferometer Space Antenna (LISA), the laser subsystems exhibit frequency fluctuations that introduce significant levels of noise into the measurements, surpassing the gravitational wave signal by several…

Instrumentation and Detectors · Physics 2024-01-15 Philipp Euringer , Niklas Houba , Gerald Hechenblaikner , Oliver Mandel , Francis Soualle , Walter Fichter

We present descriptions of the alignment and calibration tests of the Pathfinder, which achieved first light during our 2013 commissioning campaign at the LBT. The full LINC-NIRVANA instrument is a Fizeau interferometric imager with fringe…

The Planck Low Frequency Instrument (LFI) is an array of 22 pseudo-correlation radiometers on-board the Planck satellite to measure temperature and polarization anisotropies in the Cosmic Microwave Background (CMB) in three frequency bands…

The aim of the Laser Interferometer Space Antenna (LISA) is to detect gravitational waves through a phase modulation in long (2.5 Mkm) laser light links between spacecraft. Among other noise sources to be addressed are the phase…

General Relativity and Quantum Cosmology · Physics 2020-06-14 Jean-Yves Vinet , Nelson Christensen , Nicoleta Dinu-Jaeger , Michel Lintz , Nary Man , Mikhaël Pichot

Interspacecraft ranging is crucial for the suppression of laser frequency noise via time-delay interferometry (TDI). So far, the effects of on-board delays and ambiguities on the LISA ranging observables were neglected in LISA modelling and…

General Relativity and Quantum Cosmology · Physics 2024-01-17 Jan Niklas Reinhardt , Martin Staab , Kohei Yamamoto , Jean-Baptiste Bayle , Aurélien Hees , Olaf Hartwig , Karsten Wiesner , Sweta Shah , Gerhard Heinzel

The Laser Interferometer Space Antenna (LISA) mission aims to detect gravitational waves by interferometrically measuring the change of separation between free-falling test masses (TMs). LISA's interferometers must deliver pm/rtHz…

A drift mode accelerometer is a precision device that overcomes the much of the acceleration noise and readout dynamic range limitations of traditional electrostatic accelerometers. It has the potential of achieving acceleration noise…

Instrumentation and Detectors · Physics 2014-02-28 John W. Conklin

The Tianlai Dish Pathfinder Array is a radio interferometer designed to test techniques for 21~cm intensity mapping in the post-reionization universe as a means for measuring large-scale cosmic structure. It performs drift scans of the sky…

LISA is an upcoming ESA mission that will detect gravitational waves in space by interferometrically measuring the separation between free-falling test masses at picometer precision. To reach the desired performance, LISA will employ the…

General Relativity and Quantum Cosmology · Physics 2023-11-23 Lennart Wissel , Olaf Hartwig , Jean-Baptiste Bayle , Martin Staab , Ewan D. Fitzsimons , Martin Hewitson , Gerhard Heinzel

We present an in-depth analysis of the LISA Pathfinder differential acceleration performance over the entire course of its science operations, spanning approximately 500 days. We find that: 1) the evolution of the Brownian noise that…

Space-borne interferometric gravitational-wave detectors, sensitive in the low-frequency (mHz) band, will fly in the next decade. In these detectors, the spacecraft-to-spacecraft light-travel times will necessarily be unequal and…

General Relativity and Quantum Cosmology · Physics 2009-11-10 Massimo Tinto , Michele Vallisneri , J. W. Armstrong

The Laser Interferometer Space Antenna (LISA) will enable direct observations of low-frequency gravitational waves, offering unprecedented insight into astrophysical and cosmological phenomena. LISA's heterodyne interferometric measurement…

Instrumentation and Detectors · Physics 2025-08-26 Gerhard Heinzel , Javier Álvarez-Vizoso , Miguel Dovale-Álvarez
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