DIFFER

J. van Veldhoven

First name
J.
Last name
van Veldhoven
Schnell, M. ., Lutzow, P. ., van Veldhoven, J. ., Bethlem, H. L., Kupper, J. ., Friedrich, B. ., … Meijer, G. . (2007). A linear AC trap for polar molecules in their ground state. Journal of Physical Chemistry A, 111, 7411-7419. Retrieved from <Go to ISI>://000248478700021 (Original work published 2025)
van Veldhoven, J. ., Bethlem, H. L., Schnell, M. ., & Meijer, G. . (2006). Versatile electrostatic trap. Physical Review A, 73. Retrieved from <Go to ISI>://000238694900119 (Original work published 2025)
Bethlem, H. L., van Veldhoven, J. ., Schnell, M. ., & Meijer, G. . (2006). Trapping polar molecules in an ac trap. Physical Review A, 74. Retrieved from <Go to ISI>://000243166700093 (Original work published 2025)
van Veldhoven, J. . (2006). AC trapping and high-resolution spectroscopy of ammonia molecules (Radboud University Nijmegen). Radboud University Nijmegen, Nijmegen, Netherlands. Retrieved from http://repository.ubn.ru.nl/handle/2066/29874 (Original work published 2006)
van Veldhoven, J. ., Bethlem, H. L., & Meijer, G. . (2005). ac electric trap for ground-state molecules. Physical Review Letters, 94. Retrieved from <Go to ISI>://000227386000020 (Original work published 2025)
van Veldhoven, J. ., Kupper, J. ., Bethlem, H. L., Sartakov, B. ., van Roij, A. J. A., & Meijer, G. . (2004). Decelerated molecular beams for high-resolution spectroscopy - The hyperfine structure of (ND3)-N-15. European Physical Journal D, 31, 337-349. Retrieved from <Go to ISI>://000225933600018 (Original work published 2025)
Schulz, S. A., Bethlem, H. L., van Veldhoven, J. ., Kupper, J. ., Conrad, H. ., & Meijer, G. . (2004). Microstructured switchable mirror for polar molecules. Physical Review Letters, 93. Retrieved from <Go to ISI>://000222532100006 (Original work published 2025)
van Veldhoven, J. ., Jongma, R. ., Sartakov, B. ., Bongers, W. A., & Meijer, G. . (2002). Hyperfine structure of ND3. Physical Review A, 66. Retrieved from <Go to ISI>://000178382500051 (Original work published 2025)