J. Steinlechner
Tait, S. C., Steinlechner, J., Kinley-Hanlon, M. M., Murray, P. G., Hough, J., McGhee, G., Pein, F., Rowan, S., Schnabel, R., Smith, C., Terkowski, L., & Martin, I. W. (2020). Demonstration of the Multimaterial Coating Concept to Reduce Thermal Noise in Gravitational-Wave Detectors. Physical Review Letters, 125(1), Article 011102. https://doi.org/10.1103/PhysRevLett.125.011102
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Steinlechner, J., & Martin, I. W. (2019). Thermal noise from icy mirrors in gravitational wave detectors. Physical Review Research, 1(1), Article 013008. https://doi.org/10.1103/PhysRevResearch.1.013008
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Bell, A. S., Steinlechner, J., Martin, I. W., Craig, K., Cunningham, W., Rowan, S., Hough, J., Schnabel, R., & Khalaidovski, A. (2017). Anomalous optical surface absorption in nominally pure silicon samples at 1550 nm. Classical and Quantum Gravity, 34(20), Article 205013. https://doi.org/10.1088/1361-6382/aa8aac
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Aggarwal, N., Aguiar, O. D., Bauswein, A., Cella, G., Clesse, S., Cruise, A. M., Domcke, V., Figueroa, D. G., Geraci, A., Goryachev, M., Grote, H., Hindmarsh, M., Muia, F., Mukund, N., Ottaway, D., Peloso, M., Quevedo, F., Ricciardone, A., Steinlechner, J., ... White, G. (2021). Challenges and opportunities of gravitational-wave searches at MHz to GHz frequencies. Living Reviews in Relativity, 24(1), Article 4. https://doi.org/10.1007/s41114-021-00032-5
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Steinlechner, J., & Martin, I. W. (2021). How can amorphous silicon improve current gravitational-wave detectors? Physical Review D, 103(4), Article 042001. https://doi.org/10.1103/PhysRevD.103.042001
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Craig, K., Steinlechner, J., Murray, P. G., Bell, A. S., Birney, R., Haughian, K., Hough, J., MacLaren, I., Penn, S., Reid, S., Robie, R., Rowan, S., & Martin, I. W. (2019). Mirror Coating Solution for the Cryogenic Einstein Telescope. Physical Review Letters, 122(23), Article 231102. https://doi.org/10.1103/PhysRevLett.122.231102
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Steinlechner, J., Kruger, C., Lastzka, N., Steinlechner, S., Khalaidovski, A., & Schnabel, R. (2013). Optical absorption measurements on crystalline silicon test masses at 1550 nm. Classical and Quantum Gravity, 30(9), Article 095007. https://doi.org/10.1088/0264-9381/30/9/095007
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Steinlechner, J., Martin, I. W., Bell, A. S., Hough, J., Fletcher, M., Murray, P. G., Robie, R., Rowan, S., & Schnabel, R. (2018). Silicon-Based Optical Mirror Coatings for Ultrahigh Precision Metrology and Sensing. Physical Review Letters, 120(26), Article 263602. https://doi.org/10.1103/PhysRevLett.120.263602
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Steinlechner, J., Martin, I. W., Bell, A., Cole, G., Hough, J., Penn, S., Rowan, S., & Steinlechner, S. (2015). Mapping the optical absorption of a substrate-transferred crystalline AlGaAs coating at 1.5 mu m. Classical and Quantum Gravity, 32(10), Article 105008. https://doi.org/10.1088/0264-9381/32/10/105008
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J. Steinlechner
Associate Professor
Grav. waves and fundamental physics
Faculty of Science and Engineering