People: Nick Hutzler

Postdoctoral Fellow
Publications
  1. L. Anderegg, N. Vilas, C. Hallas, P. Robichaud, J. Doyle, N. Hutzler, and A. Jadbabaie. Quantum Control of Trapped Polyatomic Molecules for eEDM Searches. ArXiv 2023.
  2. N. Hutzler, J. Doyle, T. Masuda, D. A. Ang, C. Meisenhelder, N. Sasao, S. Uetake, X. Wu, D. DeMille, G. Gabrielse, and K. Yoshimura. Suppression of the optical crosstalk in a multi-channel silicon photomultiplier array. Optics Express, 29(11):16914-16926, 2021.
  3. L. Liu, J. Hood, Y. Yu, J. Zhang, N. Hutzler, K. Ni, and T. Rosenband. Building one Molecule from a Reservoir of Two Atoms. Science April 2018.
  4. Y. Yu, N. Hutzler, J. Zhang, L. Liu, K. Ni, and T. Rosenband. Motional Ground State Cooling Outside the Lamb-Dicke Regime. Phys. Rev. A, 97(063423), June 2018.
  5. N. Hutzler, L. Liu, Y. Yu, K. Ni, Eliminating light shifts for single atom trapping. New Journal of Physics, 19, February 2017.
  6. E. Chae, L. Anderegg, B.L. Augenbraun, A. Ravi, B. Hemmerling, N. Hutzler, W. Ketterle, J. Doyle, A. Collopy, and J. Ye. One dimensional magneto-optical compression of a cold CaF molecular beam. New Journal of Physics, 19(033035), March 2017.
  7. L. Anderegg, B.L. Augenbraun, E. Chae, B. Hemmerling, N. Hutzler, A. Ravi, W. Ketterle, J. Doyle, A. Collopy, and J. Ye. Radio Frequency Magneto-Optical Trapping of CaF with High Density. Phys. Rev. Lett. , 119(103201), September 2017.
  8. L. Liu, J. Zhang, Y. Yu, N. Hutzler, Y. Liu, K. Ni, and T. Rosenband. Ultracold Molecular Assembly.
  9. W. Tobias, N. Hutzler, K. Ni, and J. S. Rosenberg. A low-temperature external cavity diode laser for broad wavelength tuning. Rev. Sci. Instrum., 87(113104), November 2016.
  10. N. Hutzler, L. Liu, Y. Yu, and K. Ni. Eliminating light shifts in single-atom optical traps. arXiv e-prints 2016.
  11. B. Hemmerling, E. Chae, A. Ravi, L. Anderegg, G. Drayna, N. Hutzler, W. Ketterle, J. Doyle, A.L. Collopy, and J. Ye. Laser slowing of CaF molecules to near the capture velocity of a molecular MOT. Journal of Physics B: Atomic, Molecular and Optical Physics 2016.
News
Fri May 25, 2018

Single Molecule Results from the Ni Labs

Molecules are intrinsic coherent quantum system that have long been recognized as promising building blocks for quantum simulations, ideal natural laboratory to search for new physics, and a playground to answer fundamental questions in chemical reactions. Achieving full quantum control of molecules in bulk gases have been a forefront goal of the field that generally...
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