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Feshbach association of ultracold molecules using narrow resonances requires exquisite control of the applied magnetic field.
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2018
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2010
Cited alongside, same era.
F. Ferlaino, A. Zenesini, M. Berninger, B. Huang, H.-C. Nägerl, and R. Grimm, “Efimov Resonances in Ultracold Quantum Gases,” Few-Body Systems 51
2011
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F. Schreck and T. Meyrath, “Ultracold atom experiment control system CONTROL,” (2011)
2011
Cited alongside, same era.
D. A. Brue and J. M. Hutson, “Magnetically Tunable Feshbach Resonances in Ultracold Li-Yb Mixtures,” Physical Review Letters 108
2012
Cited alongside, same era.
D. A. Brue and J. M. Hutson, “Prospects of forming ultracold molecules in 2
2013
Cited alongside, same era.
B. Pasquiou, A. Bayerle, S. M. Tzanova, S. Stellmer, J. Szczepkowski, M. Parigger, R. Grimm, and F. Schreck, “Quantum degenerate mixtures of strontium and rubidium atoms,” Phys. Rev. A 88
2013
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M. M. Parish, “The BCS–BEC crossover,” in Quantum Gas experiments, Exploring Many-Body States (Imperial College Press, 2014) p. 179
2014
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T. Takekoshi, L. Reichsöllner, A. Schindewolf, J. M. Hutson, C. R. Le Sueur, O. Dulieu, F. Ferlaino, R. Grimm, and H. C. Nägerl, “Ultracold dense samples of dipolar RbCs molecules in the rovibrational and hyperfine ground state,” Physical Review Letters 113
2014
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Y.-M. Yang, H.-T. Xie, W.-C. Ji, Y.-F. Wang, W.-Y. Zhang, S. Chen, and X. Jiang, “Ultra-low noise and high bandwidth bipolar current driver for precise magnetic field control,” Review of Scientific Instruments 90
2019
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X.-T. Xu, Z.-Y. Wang, R.-H. Jiao, C.-R. Yi, W. Sun, and S. Chen, “Ultra-low noise magnetic field for quantum gases,” Review of Scientific Instruments 90
2019
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B. Merkel, K. Thirumalai, J. E. Tarlton, V. M. Schäfer, C. J. Ballance, T. P. Harty, and D. M. Lucas, “Magnetic field stabilization system for atomic physics experiments,” Review of Scientific Instruments 90
2019
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K. K. Voges, P. Gersema, T. Hartmann, T. A. Schulze, A. Zenesini, and S. Ospelkaus, “Formation of ultracold weakly bound dimers of bosonic 23
2020
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A. Green, H. Li, J. H. See Toh, X. Tang, K. C. McCormick, M. Li, E. Tiesinga, S. Kotochigova, and S. Gupta, “Feshbach Resonances in p-Wave Three-Body Recombination within Fermi-Fermi Mixtures of Open-Shell 6
2020
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R. Thomas and N. Kjærgaard, “A digital feedback controller for stabilizing large electric currents to the ppm level for Feshbach resonance studies,” Review of Scientific Instruments 91
2020
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C. O’Dwyer, S. J. Ingleby, I. C. Chalmers, P. F. Griffin, and E. Riis, “A feed-forward measurement scheme for periodic noise suppression in atomic magnetometry,” Review of Scientific Instruments 91
2020
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P. Weckesser, F. Thielemann, D. Wiater, A. Wojciechowska, L. Karpa, K. Jachymski, M. Tomza, T. Walker, and T. Schaetz, “Observation of Feshbach resonances between a single ion and ultracold atoms,” Nature 600
2021
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T. Pyragius and K. Jensen, “A high performance active noise control system for magnetic fields,” Review of Scientific Instruments 92
2021
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T. Franzen, A. Guttridge, K. E. Wilson, J. Segal, M. D. Frye, J. M. Hutson, and S. L. Cornish, “ Observation of magnetic Feshbach resonances between Cs and 173
2022
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Z.-X. Duan, W.-T. Wu, Y.-T. Lin, and S.-J. Yang, “Simple and active magnetic-field stabilization for cold atom experiments,” Review of Scientific Instruments 93
2022
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W. Wei, P. Hao, Z. Ma, H. Zhang, L. Pang, F. Wu, K. Deng, J. Zhang, and Z. Lu, “Measurement and suppression of magnetic field noise of trapped ion qubit,” Journal of Physics B: Atomic, Molecular and Optical Physics 55
2022
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M. Borkowski, L. Reichsöllner, P. Thekkeppatt, V. Barbé, T. Van Roon, K. van Druten, and F. Schreck, “Magnetic field stabilization system schematics,” (2023)
2023
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