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Bond, L., Lenstra, L., Gerritsma, R., & Safavi-Naini, A. (2022). Effect of micromotion and local stress in quantum simulations with trapped ions in optical tweezers. Physical Review A, 106(4), [042612]. https://doi.org/10.1103/PhysRevA.106.042612[details]
Hirzler, H., Lous, R. S., Trimby, E., Pérez-Ríos, J., Safavi-Naini, A., & Gerritsma, R. (2022). Observation of Chemical Reactions between a Trapped Ion and Ultracold Feshbach Dimers. Physical Review Letters, 128(10), [103401]. https://doi.org/10.1103/PhysRevLett.128.103401[details]
Trimby, E., Hirzler, H., Fürst, H., Safavi-Naini, A., Gerritsma, R., & Lous, R. S. (2022). Buffer gas cooling of ions in radio-frequency traps using ultracold atoms. New Journal of Physics, 24(3), [035004]. https://doi.org/10.1088/1367-2630/ac5759[details]
Arias Espinoza, J. D., Mazzanti, M., Fouka, K., Schüssler, R. X., Wu, Z., Corboz, P., Gerritsma, R., & Safavi-Naini, A. (2021). Engineering spin-spin interactions with optical tweezers in trapped ions. Physical Review A, 104(1), [013302]. https://doi.org/10.1103/PhysRevA.104.013302[details]
Mazzanti, M., Schüssler, R. X., Arias Espinoza, J. D., Wu, Z., Gerritsma, R., & Safavi-Naini, A. (2021). Trapped Ion Quantum Computing Using Optical Tweezers and Electric Fields. Physical Review Letters, 127(26), [260502]. https://doi.org/10.1103/PhysRevLett.127.260502[details]
Mazzanti, M. (2023). Trapped ions in optical tweezers and their applications to quantum computing. [Thesis, fully internal, Universiteit van Amsterdam]. [details]
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