Working Paper (57)

2341.
Working Paper
Landgraf, J.; Flühmann, C.; Fösel, T.; Marquardt, F.; Schoelkopf, R. J.: Fast quantum control of cavities using an improved protocol without coherent errors. arXiv, 2310.10498 (2023), 19 pages, 3 figures in the main text, 1 figure in the Appendix pp.
2342.
Working Paper
Rodríguez Mangues, C.; Arlt, S.; Möckl, L.; Krenn, M.: XLuminA: An Auto-differentiating Discovery Framework for Super-Resolution Microscopy. arXiv, 2310.08408 (2023)
2343.
Working Paper
Wanjura, C. C.; Marquardt, F.: Fully Non-Linear Neuromorphic Computing with Linear Wave Scattering. arXiv, 2308.16181 (2023), 18 pages, 6 figures; comments welcome! pp.
2344.
Working Paper
Mohseni, N.; Shi, J.; Byrnes, T.; Hartmann, M.: Deep learning of many-body observables and quantum information scrambling. arXiv, 2302.04621 (2023)
2345.
Working Paper
Baßler, N. S.; Reitz, M.; Schmidt, K. P.; Genes, C.: Linear optical elements based on cooperative subwavelength emitter arrays. Optics Express 31 (4) pp. 6003 - 6026 (2023), 16 pp.
2346.
Working Paper
Andreanov, A.; Carrega, M.; Murugan, J.; Olle, J.; Rosa, D.; Shir, R.: From Dyson Models to Many-Body Quantum Chaos. arXiv, 2302.00917 (2023)
2347.
Working Paper
Blania, A.; Herbig, S.; Dechent, F.; van Nieuwenburg, E.; Marquardt, F.: Deep learning of spatial densities in inhomogeneous correlated quantum systems. arXiv, 2211.09050 (2022), 7 pages, 3 figures pp.
2348.
Working Paper
Arlt, S.; Ruiz-Gonzalez, C.; Krenn, M.: Digital Discovery of a Scientific Concept at the Core of Experimental Quantum Optics. arXiv, 2210.09981 (2022), 6 pages, 6 figures, comments welcome pp.
2349.
Working Paper
Bilous, P.: Theory of Laser-Assisted Nuclear Excitation by Electron Capture. arXiv, 2210.07708 (2022)
2350.
Working Paper
Dawid, A.; Arnold, J.; Requena, B.; Gresch, A.; Płodzień, M.; Donatella, K.; Nicoli, K.; Stornati, P.; Koch, R.; Büttner, M. et al.; Okuła, R.; Muñoz-Gil, G.; Vargas-Hernández, R. A.; Cervera-Lierta, A.; Carrasquilla, J.; Dunjko, V.; Gabrié, M.; Huembeli, P.; van Nieuwenburg, E.; Vicentini, F.; Wang, L.; Wetzel, S. J.; Carleo, G.; Greplová, E.; Krems, R.; Marquardt, F.; Tomza, M.; Lewenstein, M.; Dauphin, A.: Modern applications of machine learning in quantum sciences. arXiv, 2204.04198 (2022), 268 pages, 87 figures. Comments and feedback are very welcome. Figures and tex files are available at https://github.com/Shmoo137/Lecture-Notes pp.
2351.
Working Paper
Navarrete-Benlloch, C.: Introduction to quantum optics. arXiv, 2203.13206 (2022)
2352.
Working Paper
Ribeiro, H.; Marquardt, F.: Accelerated Non-Reciprocal Transfer of Energy Around an Exceptional Point. arXiv, 2111.11220 (2021)
2353.
Working Paper
Goldberg, A. Z.; Sanchez-Soto, L.; Ferretti, H.: Intrinsic Sensitivity Limits for Multiparameter Quantum Metrology. (2021)
2354.
Working Paper
Blessing, K.; Schirmer, J.; Parmar, A.; Singh, K.: Depth encoded input polarisation independent swept source cross-polarised optical coherence tomography probe. Journal of Physics D: Applied Physics (2021)
2355.
Working Paper
Goldberg, A. Z.; Klimov, A. B.; Leuchs, G.; Sanchez-Soto, L.: Rotation sensing at the ultimate limit. Journal of Physics: Photonics 3 (2), 022008 (2021), 21 pp.
2356.
Working Paper
Koutny, D.; Hradil, Z.; Rehacek, J.; Sanchez-Soto, L.: Axial superlocalization with vortex beams. Quantum Science and Technology 6 (2), 025021 (2021), 10 pages, 4 figures. To appear in Quantum Science and Technology pp.
2357.
Working Paper
De, S.; Gil-Lopez, J.; Brecht, B.; Silberhorn, C.; Sanchez-Soto, L.; Hradil, Z.; Rehacek, J.: Effects of coherence on temporal resolution. (2021)
2358.
Working Paper
Fösel, T.; Niu, M. Y.; Marquardt, F.; Li (李力), L.: Quantum circuit optimization with deep reinforcement learning. arXiv, 2103.07585 (2021)
2359.
Working Paper
Teo, Y. S.; Shin, S.; Jeong, H.; Kim, Y.; Kim, Y.-H.; Struchalin, G. I.; Kovlakov, E. V.; Straupe, S. S.; Kulik, S. P.; Leuchs, G. et al.; Sanchez-Soto, L.: Benchmarking quantum tomography completeness and fidelity with machine learning. (2021)
2360.
Working Paper
Mineo, F.; Genes, C.: Excitation transport with collective radiative decay. arXiv:2102.08139 (2021)
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