- LISA Charge Management Device: design and performance
Francesca Barbieri; Joseph Arthur Conroy; Zane Forrester; Andres Leyton et al. · Classical and Quantum Gravity · 2026 · DOI: 10.1088/1361-6382/ae7d80 (opens in new tab)
- Maximum Likelihood Detection of Instrumental Glitches in LISA TDI Data
O. Sauter; Peter Wass; W. F. Guerrero Sanchez; H. Inchauspé · arXiv (Cornell University) · 2025 · DOI: 10.48550/arxiv.2501.06315 (opens in new tab)
- GRATTIS: the gravitational reference advanced technology test in space
John Conklin; Stephen Apple; Anthony Dávila Álvarez; Stephen Earl Bennett et al. · 2025 · DOI: 10.1117/12.3061925 (opens in new tab) · 2 citations
- Advanced charge control dynamics simulation for the LISA gravitational reference sensor
Samantha Parry Kenyon; Stephen Apple; John Siu; Peter Wass et al. · Classical and Quantum Gravity · 2025 · DOI: 10.1088/1361-6382/adaf00 (opens in new tab) · 6 citations
- Extracting gravitational wave signals from LISA data in the presence of artifacts
E. Castelli; Quentin Baghi; John G. Baker; J. Slutsky et al. · Classical and Quantum Gravity · 2025 · DOI: 10.1088/1361-6382/adb931 (opens in new tab) · 8 citations
- Simulation of UV light propagation in the LISA charge management system fiber optics
C. Richardson; Simon Barke; Brij Patel; Lea Bischof et al. · Classical and Quantum Gravity · 2025 · DOI: 10.1088/1361-6382/ae1c15 (opens in new tab)
- Development of optical ground support equipment for the CubeSat laser infrared crosslink (CLICK) B/C mission
Leonardo Gallo de la Paz; Paul Serra; William Kammerer; Hannah Tomio et al. · 2025 · DOI: 10.1117/12.3075398 (opens in new tab)
- Cubesat Laser Infrared CrosslinK (CLICK) B/C Mission Development Status
Paige Forester; Celvi Lisy; Ajay Gill; Paul Serra et al. · 2025 · DOI: 10.1109/aero63441.2025.11068548 (opens in new tab)
- CLICK-A: Optical Communication Experiments From a CubeSat Downlink Terminal
William Kammerer; Peter Grenfell; Jacob F. Harburg; Nicholas Belsten et al. · Digital Commons - USU (Utah State University) · 2025 · DOI: 10.26077/9cvd-ha51 (opens in new tab)
- Extraction of gravitational wave signals from LISA data in the presence of artifacts
E. Castelli; Quentin Baghi; John G. Baker; Jacob Slutsky et al. · arXiv (Cornell University) · 2024
- Sensor noise in LISA Pathfinder: Laser frequency noise and its coupling to the optical test mass readout
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Physical review. D/Physical review. D. · 2024 · DOI: 10.1103/physrevd.109.042003 (opens in new tab) · 8 citations
- MeV proton and neutron damage effects on deep-ultraviolet light-emitting diodes
Jian-Sian Li; Chao-Ching Chiang; Hsiao-Hsuan Wan; Jihyun Kim et al. · Journal of Vacuum Science & Technology B Nanotechnology and Microelectronics Materials Processing Measurement and Phenomena · 2024 · DOI: 10.1116/6.0003818 (opens in new tab) · 1 citation
- LISA Dynamics & Control: Closed-loop Simulation and Numerical Demonstration of Time Delay Interferometry
Lavinia Heisenberg; H. Inchauspé; Dam Quang Nam; O. Sauter et al. · arXiv (Cornell University) · 2023 · DOI: 10.48550/arxiv.2306.17262 (opens in new tab)
- Short Wavelength UV LED Lens System to Attenuate Noise in LISA
Marilyn Braojos Gutierrez; Samantha Parry Kenyon; Benjamin C. Letson; Simon Barke et al. · AIAA SCITECH 2023 Forum · 2023 · DOI: 10.2514/6.2023-1602 (opens in new tab) · 1 citation
- Tilt-to-length coupling in LISA Pathfinder: A data analysis
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Physical review. D/Physical review. D. · 2023 · DOI: 10.1103/physrevd.108.102003 (opens in new tab) · 21 citations
- Review-Reliability and Degradation Mechanisms of Deep UV AlGaN LEDs
Benjamin C. Letson; John Conklin; Peter Wass; Simon Barke et al. · ECS Journal of Solid State Science and Technology · 2023 · DOI: 10.1149/2162-8777/acd602 (opens in new tab) · 26 citations
- Design and performance characterization of a new LISA-like (laser interferometer space antenna-like) gravitational reference sensor and torsion pendulum testbed
Stephen Apple; Anthony Dávila Álvarez; Samantha Parry Kenyon; Andrew Chilton et al. · Review of Scientific Instruments · 2023 · DOI: 10.1063/5.0135125 (opens in new tab) · 17 citations
- Charging of free-falling test masses in orbit due to cosmic rays: Results from LISA Pathfinder
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Physical review. D/Physical review. D. · 2023 · DOI: 10.1103/physrevd.107.062007 (opens in new tab) · 27 citations
- Simulating the charging of isolated free-falling masses from TeV to eV energies: Detailed comparison with LISA Pathfinder results
Peter Wass; T. J. Sumner; H. M. Araújo; D. Hollington · Physical review. D/Physical review. D. · 2023 · DOI: 10.1103/physrevd.107.022010 (opens in new tab) · 12 citations
- LISA dynamics and control: Closed-loop simulation and numerical demonstration of time delay interferometry
Lavinia Heisenberg; H. Inchauspé; Dam Quang Nam; O. Sauter et al. · Physical review. D/Physical review. D. · 2023 · DOI: 10.1103/physrevd.108.122007 (opens in new tab) · 7 citations
- Ranging over Optical Communication Links in the CubeSat Laser Infrared CrosslinK (CLICK) B/C Mission
Hannah Tomio; Paul Serra; Leonardo Gallo de la Paz; Mohamed Mokhtar Mohamed et al. · 2023 · DOI: 10.1109/icsos59710.2023.10490276 (opens in new tab)
- Optical ranging and time transfer calibration on the CubeSat Laser Infrared CrosslinK mission
Paul Serra; Hannah Tomio; Nicholas Belsten; William Kammerer et al. · 2023 · DOI: 10.1117/12.2691448 (opens in new tab) · 1 citation
- Transmitter and fine pointing system development and testing for the CubeSat Laser Infrared CrosslinK (CLICK) B/C mission
Hannah Tomio; William Kammerer; Peter Grenfell; Ondrej Čierny et al. · 2023 · DOI: 10.1117/12.2690323 (opens in new tab) · 4 citations
- Laser time-transfer facility and preliminary results from the CHOMPTT CubeSat mission
Tyler Ritz; Danielle Coogan; John Conklin; Joseph T. Coffaro et al. · Advances in Space Research · 2023 · DOI: 10.1016/j.asr.2023.01.018 (opens in new tab) · 4 citations
- Sensor noise in LISA Pathfinder: An extensive in-flight review of the angular and longitudinal interferometric measurement system
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Physical review. D/Physical review. D. · 2022 · DOI: 10.1103/physrevd.106.082001 (opens in new tab) · 39 citations
- New LISA dynamics feedback control scheme: Common-mode isolation of test mass control and probes of test-mass acceleration
Inchausp\'e, Henri; M. Hewitson; O. Sauter; Peter Wass · Physical review. D/Physical review. D. · 2022 · DOI: 10.1103/physrevd.106.022006 (opens in new tab) · 21 citations
- Development and Testing of the Laser Transmitter and Pointing, Acquisition, and Tracking System for the CubeSat Laser Infrared CrosslinK (CLICK) B/C Mission
Hannah Tomio; Peter Grenfell; William Kammerer; Paul Serra et al. · 2022 · DOI: 10.1109/icsos53063.2022.9749715 (opens in new tab) · 16 citations
- A UV LED-Based Charge Management System for the LISA Gravitational Reference Sensor
Myles Clark; Ben Letson; Samantha Parry-Kenyon; Taiwo Olatunde et al. · Bulletin of the American Physical Society · 2021 · 3 citations
- Sensor Noise in LISA Pathfinder: In-Flight Performance of the Optical Test Mass Readout
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Physical Review Letters · 2021 · DOI: 10.1103/physrevlett.126.131103 (opens in new tab) · 72 citations
- In-flight testing of the injection of the LISA Pathfinder test mass into a geodesic
D. Bortoluzzi; Davide Vignotto; Andrea Zambotti; M. Armano et al. · Advances in Space Research · 2021 · DOI: 10.1016/j.asr.2020.09.009 (opens in new tab) · 37 citations
- CubeSat laser infrared crosslinK mission status
Paul Serra; Hannah Tomio; Ondrej Čierny; William Kammerer et al. · International Conference on Space Optics — ICSO 2020 · 2021 · DOI: 10.1117/12.2599543 (opens in new tab) · 8 citations
- A challenging technological problem: the injection of the LISA Pathfinder test mass into a geodesic
D. Bortoluzzi; John Conklin; Paolo Sarra; Andrea Zambotti et al. · 43rd COSPAR Scientific Assembly. Held 28 January - 4 February · 2021
- Development of the UV LED-Based Charge Management System for the LISA Gravitational Reference Sensor
Ben Letson; Samantha Parry; Myles Clark; Taiwo Olatunde et al. · Bulletin of the American Physical Society · 2020 · 2 citations
- Charge Induced Acceleration Noise in the LISA Gravitational Reference Sensor
Classical and Quantum Gravity · 2020 · DOI: 10.1088/1361-6382/ab5f6e (opens in new tab)
- Spacecraft and interplanetary contributions to the magnetic environment on-board LISA Pathfinder
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Monthly Notices of the Royal Astronomical Society · 2020 · DOI: 10.1093/mnras/staa830 (opens in new tab) · 36 citations
- Numerical Modeling and Experimental Demonstration of Pulsed Charge Control for the Space Inertial Sensor used in LISA
H. Inchauspé; Taiwo Olatunde; Stephen Apple; Samantha Parry et al. · Physical review. D/Physical review. D. · 2020 · DOI: 10.1103/physrevd.102.042002 (opens in new tab) · 27 citations
- Design and Prototyping of a Nanosatellite Laser Communications Terminal for the Cubesat Laser Infrared CrosslinK (CLICK) B/C Mission
Peter Grenfell; Paul Serra; Ondrej Čierny; William Kammerer et al. · Digital Commons - USU (Utah State University) · 2020 · 7 citations
- Status of the LISA Space Gravitational Wave Mission
John Conklin · Bulletin of the American Physical Society · 2020
- Testing of the CubeSat Laser Infrared CrosslinK (CLICK-A) Payload
Ondrej Čierny; Paul Serra; William Kammerer; Peter Grenfell et al. · Digital Commons - USU (Utah State University) · 2020 · 6 citations
- Leveraging LISA Pathfinder technologies for next generation Earth geodesy inertial sensors
John Conklin; Peter Wass · AGU Fall Meeting Abstracts · 2019
- Charge Management System for the LISA Gravitational Reference Sensor using UV LED-Based Charge Control via the Photoelectric Effect
Samantha Parry; Ben Letson; Taiwo Olatunde; Simon Barke et al. · APS April Meeting Abstracts · 2019
- LISA Pathfinder
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · arXiv (Cornell University) · 2019 · DOI: 10.1142/9789811207402_0013 (opens in new tab)
- Upgraded University of Florida Torsion Pendulum for Testing Key LISA Technology
Stephen Apple; Andrew Chilton; Taiwo Olatunde; Samantha Parry et al. · APS April Meeting Abstracts · 2019
- Experimental tests and numerical simulations of the LISA Charge Management System
H. Inchauspé; Stephen Apple; Taiwo Olatunde; Samantha D. Parry et al. · American Astronomical Society Meeting Abstracts #233 · 2019
- Forbush Decreases and <2 Day GCR Flux Non-recurrent Variations Studied with LISA Pathfinder
The Astrophysical Journal · 2019 · DOI: 10.3847/1538-4357/ab0c99 (opens in new tab)
- LISA Pathfinder platform stability and drag-free performance
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Physical review. D/Physical review. D. · 2019 · DOI: 10.1103/physrevd.99.082001 (opens in new tab) · 77 citations
- LISA Pathfinder micronewton cold gas thrusters: In-flight characterization
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Physical review. D/Physical review. D. · 2019 · DOI: 10.1103/physrevd.99.122003 (opens in new tab) · 55 citations
- Temperature stability in the sub-milliHertz band with LISA Pathfinder
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Monthly Notices of the Royal Astronomical Society · 2019 · DOI: 10.1093/mnras/stz1017 (opens in new tab) · 59 citations
- LISA Pathfinder Performance Confirmed in an Open-Loop Configuration: Results from the Free-Fall Actuation Mode
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Physical Review Letters · 2019 · DOI: 10.1103/physrevlett.123.111101 (opens in new tab) · 25 citations
- Micrometeoroid Events in LISA Pathfinder
James Ira Thorpe; J. Slutsky; John G. Baker; T. B. Littenberg et al. · The Astrophysical Journal · 2019 · DOI: 10.3847/1538-4357/ab3649 (opens in new tab) · 29 citations
- Optical Communications Crosslink Payload Prototype Development for the Cubesat Laser Infrared CrosslinK (CLICK) Mission
Paul Serra; Ondrej Čierny; Rodrigo Diez; Peter Grenfell et al. · Digital Commons - USU (Utah State University) · 2019 · 9 citations
- Space Based Gravitational Wave Astronomy Beyond LISA
John Baker; Simon Barke; Peter Bender; Emanuele Berti et al. · arXiv (Cornell University) · 2019 · DOI: 10.48550/arxiv.1907.11305 (opens in new tab) · 14 citations
- A Free Space Backlink For the LISA Mission
Daniel Hillsberry; Andrew Chilton; Soham Kulkarni; P. Fulda et al. · American Astronomical Society Meeting Abstracts #233 · 2019
- Preliminary Results from the CHOMPTT Laser Time-Transfer Mission
John Conklin; Seth Nydam; Tyler Ritz; Nathan Barnwell et al. · Digital Commons - USU (Utah State University) · 2019 · 5 citations
- The CubeSat Laser Infrared CrosslinK Mission (CLICK)
Kerri Cahoy; Peter Grenfell; Angela Crews; Michael A. Long et al. · International Conference on Space Optics — ICSO 2018 · 2019 · DOI: 10.1117/12.2535953 (opens in new tab) · 47 citations
- A UV LED-based Charge Management System for LISA
John Conklin; Andrew Chilton; Taiwo Olatunde; Stephen Apple et al. · American Astronomical Society Meeting Abstracts #231 · 2018 · 1 citation
- Characteristics and energy dependence of recurrent galactic cosmic-ray flux depressions and of a Forbush decrease with LISA Pathfinder
Armano, M.; H. Audley; J. Baird; M. Bassan et al. · LA Referencia (Red Federada de Repositorios Institucionales de Publicaciones Científicas) · 2018 · DOI: 10.3847/1538-4357/aaa774 (opens in new tab) · 38 citations
- Precision charge control for isolated free-falling test masses: LISA pathfinder results
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Physical review. D/Physical review. D. · 2018 · DOI: 10.1103/physrevd.98.062001 (opens in new tab) · 66 citations
- Measuring the Galactic Cosmic Ray flux with the LISA Pathfinder radiation monitor
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Astroparticle Physics · 2018 · DOI: 10.1016/j.astropartphys.2018.01.006 (opens in new tab) · 27 citations
- Experimental results from the ST7 mission on LISA Pathfinder
G. M. Anderson; J. B. Anderson; Maxwell G. Anderson; G. Aveni et al. · Physical review. D/Physical review. D. · 2018 · DOI: 10.1103/physrevd.98.102005 (opens in new tab) · 92 citations
- Calibrating the system dynamics of LISA Pathfinder
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Physical review. D/Physical review. D. · 2018 · DOI: 10.1103/physrevd.97.122002 (opens in new tab) · 41 citations
- Beyond the Required LISA Free-Fall Performance: New LISA Pathfinder Results down to 20 mu Hz
M. Armano; H. Audley; J. Baird; Pierre Binétruy et al. · Physical Review Letters · 2018 · DOI: 10.1103/physrevlett.120.061101 (opens in new tab) · 382 citations
- Technology Development for the LISA Backlink
Andrew Chilton; Daniel Hillsberry; G. Ciani; Michele Coneglian et al. · American Astronomical Society Meeting Abstracts #231 · 2018
- Motivated by LISA: Current Progress on the Development Of Space-flight Qualified Optical Hardware
Daniel Hillsberry; Andrew Chilton; Guido Mueller; John Conklin · APS · 2018
- LISA Technologies For Other Purposes: Ongoing Development of Extremely Precise and Stable Optical Systems
Daniel Hillsberry; Guido Mueller; John Conklin; Andrew Chilton · 42nd COSPAR Scientific Assembly · 2018
- University of Florida Torsion Pendulum for Testing Key LISA Technology
Stephen Apple; Andrew Chilton; Taiwo Olatunde; Brandon Bickerstaff et al. · American Astronomical Society Meeting Abstracts #231 · 2017 · DOI: 10.2514/6.2017-5138 (opens in new tab)
- Lifetime testing UV LEDs for use in the LISA charge management system
D. Hollington; J. Baird; T. J. Sumner; Peter Wass · Classical and Quantum Gravity · 2017 · DOI: 10.1088/1361-6382/aa87eb (opens in new tab) · 21 citations
- Gravitational Reference Sensor Front-End Electronics Simulator for LISA
Journal of Physics: Conference Series · 2017 · DOI: 10.1088/1742-6596/840/1/012041 (opens in new tab)
- Charge-Induced Force Noise on Free-Falling Test Masses: Results from LISA Pathfinder
M. Armano; H. Audley; G. Auger; J. Baird et al. · Physical Review Letters · 2017 · DOI: 10.1103/physrevlett.118.171101 (opens in new tab) · 105 citations
- CHOMPTT (CubeSat Handling of Multisystem Precision Timing Transfer): From Concept to Launch Pad
Seth Nydam; J. B. Anderson; Nathan Barnwell; María Cristina Carrasquilla et al. · 2017
- Working Towards the LISA Optical Benches at UF
Andrew Chilton; Daniel Hillsberry; G. Ciani; John Conklin et al. · Bulletin of the American Physical Society · 2017
- Preparing for LISA in the post-detection era
John Conklin · Bulletin of the American Physical Society · 2017
- On-ground testing of the role of adhesion in the LISA-Pathfinder test mass injection phase
D. Bortoluzzi; Carlo Zanoni; John Conklin · Advances in Space Research · 2017 · DOI: 10.1016/j.asr.2017.02.030 (opens in new tab) · 17 citations
- Evaluation of new technologies for the LISA gravitational reference sensor using the UF torsion pendulum
John Conklin; Andrew Chilton; Taiwo Olatunde; Stephen Apple et al. · American Astronomical Society Meeting Abstracts #227 · 2016
- Injection of a Body into a Geodesic: Lessons Learnt from the LISA Pathfinder Case
D. Bortoluzzi; M. Armano; H. Audley; G. Auger et al. · 2016 · 10 citations
- Testing new technologies for the LISA Gravitational Reference Senso
John Conklin; Andrew Chilton; Taiwo Olatunde; Stephen Apple et al. · AAS · 2015
- Technology development for the LISA using the UF Torsion Pendulu
John Conklin; Andrew Chilton; Taiwo Olatunde; Stephen Apple et al. · 2015
- LISA technology development using the UF precision torsion pendulum
Stephen Apple; Andrew Chilton; Taiwo Olatunde; G. Ciani et al. · Bulletin of the American Physical Society · 2015
- LISA in the gravitational wave decade
John Conklin; Neil J. Cornish · Bulletin of the American Physical Society · 2015
- 10th International LISA Symposium
G. Ciani; John Conklin; Guido Mueller · Journal of Physics Conference Series · 2015 · DOI: 10.1088/1742-6596/610/1/011001 (opens in new tab) · 1 citation
- 240 nm UV LEDs for LISA test mass charge control
Taiwo Olatunde; Ryan Shelley; Andrew Chilton; Paul Serra et al. · Journal of Physics Conference Series · 2015 · DOI: 10.1088/1742-6596/610/1/012034 (opens in new tab) · 16 citations
- The UF Torsion Pendulum, a LISA Technology Testbed: Sensing System and Initial Results
Andrew Chilton; Ryan Shelley; Taiwo Olatunde; G. Ciani et al. · Journal of Physics Conference Series · 2015 · DOI: 10.1088/1742-6596/610/1/012038 (opens in new tab) · 7 citations
- Summary of the results of the LISA-Pathfinder Test Mass release
Carlo Zanoni; D. Bortoluzzi; John Conklin; I. Koker et al. · Journal of Physics Conference Series · 2015 · DOI: 10.1088/1742-6596/610/1/012022 (opens in new tab) · 28 citations
- A new torsion pendulum for testing enhancements to the LISA Gravitational Reference Sensor
John Conklin; Andrew Chilton; G. Ciani; Guido Mueller et al. · American Astronomical Society Meeting Abstracts #223 · 2014
- Sensing and actuation system for the University of Florida Torsion Pendulum for LISA
Andrew Chilton; Ryan Shelley; Taiwo Olatunde; G. Ciani et al. · APS April Meeting Abstracts · 2014 · DOI: 10.1103/baps.2014.april.y15.7 (opens in new tab)
- UV-LED-based charge control for LISA
Taiwo Olatunde; Ryan Shelley; Andrew Chilton; G. Ciani et al. · Bulletin of the American Physical Society · 2014 · DOI: 10.1103/baps.2014.april.l1.28 (opens in new tab)
- Mechanical design of the University of Florida Torsion Pendulum for testing the LISA Gravitational Reference Sensor
Ryan Shelley; Andrew Chilton; Tawio Olatunde; G. Ciani et al. · Bulletin of the American Physical Society · 2014 · DOI: 10.1103/baps.2014.april.l1.27 (opens in new tab)
- Simulation of a critical task of the LISA release mechanism: the Injection of the Test Mass into Geodesic
Carlo Zanoni; D. Bortoluzzi; John Conklin · Institutional Research Information System (Università degli Studi di Trento) · 2013
- Testing the Injection of the LISA Pathfinder Test Mass into Geodesic Conditions
Carlo Zanoni; D. Bortoluzzi; John Conklin; I. Koker et al. · Iris (University of Trento) · 2013 · 7 citations
- Prediction of the LISA-Pathfinder release mechanism in-flight performance
D. Bortoluzzi; John Conklin; Carlo Zanoni · Advances in Space Research · 2012 · DOI: 10.1016/j.asr.2012.11.001 (opens in new tab) · 43 citations