Zobrazeno 1 - 10
of 92
pro vyhledávání: '"T Feldker"'
Autor:
I. Pogorelov, T. Feldker, Ch. D. Marciniak, L. Postler, G. Jacob, O. Krieglsteiner, V. Podlesnic, M. Meth, V. Negnevitsky, M. Stadler, B. Höfer, C. Wächter, K. Lakhmanskiy, R. Blatt, P. Schindler, T. Monz
Publikováno v:
PRX Quantum, Vol 2, Iss 2, p 020343 (2021)
Quantum information processing is steadily progressing from a purely academic discipline towards applications throughout science and industry. Transitioning from lab-based, proof-of-concept experiments to robust, integrated realizations of quantum in
Externí odkaz:
https://doaj.org/article/4eeae8861edc4c568ac377c2cedfc552
Autor:
Thomas Monz, Bernd Höfer, Georg Jacob, Lukas Postler, Vlad Negnevitsky, Rainer Blatt, Michael Meth, Oliver Krieglsteiner, Verena Podlesnic, Kirill Lakhmanskiy, Christian D. Marciniak, Ivan Pogorelov, Christoph Wächter, T. Feldker, Martin Stadler, Philipp Schindler
Publikováno v:
PRX Quantum, 2 (2)
Quantum information processing is steadily progressing from a purely academic discipline towards applications throughout science and industry. Transitioning from lab-based, proof-of-concept experiments to robust, integrated realizations of quantum in
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ad3202b3237f31ca99b7c0c744eb26a2
Autor:
T. Feldker, J. Joger, N. V. Ewald, H. Fürst, H. Hirzler, Rene Gerritsma, M. Mazzanti, Rianne S. Lous, J. D. Arias Espinoza, Eleanor Trimby
Publikováno v:
Physical Review A. 102
We describe and characterize an experimental apparatus that has been used to study interactions between ultracold lithium atoms and ytterbium ions. The preparation of ultracold clouds of Li atoms is described as well as their subsequent transport and
Autor:
Rene Gerritsma, H. Fürst, Dariusz Wiater, M. Mazzanti, N. V. Ewald, H. Hirzler, Michał Tomza, T. Feldker
Publikováno v:
Nature Physics, 16(4). Nature Publishing Group
Great advances in precision quantum measurement have been achieved with trapped ions and atomic gases at the lowest possible temperatures. These successes have inspired ideas to merge the two systems. In this way one can study the unique properties o
Publikováno v:
Physical Review A
Publikováno v:
Physical Review Letters, 122(25):253401. American Physical Society
We report on the observation of interactions between ultracold Rydberg atoms and ions in a Paul trap. The rate of observed inelastic collisions, which manifest themselves as charge transfer between the Rydberg atoms and ions, exceeds that of Langevin
Publikováno v:
Physical Review A, 98(1):012713. American Physical Society
We report on observations of spin dynamics in single Yb$^+$ ions immersed in a cold cloud of spin-polarized $^6$Li atoms. This species combination has been proposed to be the most suitable system to reach the quantum regime in atom-ion experiments. F
Publikováno v:
Physical Review A. 97
We report on spectroscopic results on the $^{2}S_{1/2}\ensuremath{\rightarrow}\phantom{\rule{0.16em}{0ex}}^{2}P_{3/2}$ transition in single trapped ${\mathrm{Yb}}^{+}$ ions. We measure the isotope shifts for all stable ${\mathrm{Yb}}^{+}$ isotopes ex
Publikováno v:
Journal of Physics B: Atomic, Molecular and Optical Physics, 51(19):195001. Institute of Physics
Journal of Physics B: Atomic, Molecular and Optical Physics, 51(19):195001. IOP Publishing Ltd.
Journal of Physics B: Atomic, Molecular and Optical Physics, 51(19):195001. IOP Publishing Ltd.
We perform numerical simulations of trapped $^{171}$Yb$^+$ ions that are buffer gas cooled by a cold cloud of $^6$Li atoms. This species combination has been suggested to be the most promising for reaching the quantum regime of interacting atoms and
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::610773f81cd9f3c3a082aa7add922e71
Publikováno v:
Physical Review A, 96(3):030703(R). American Physical Society
We report on the observation of cold collisions between $^6$Li atoms and Yb$^+$ ions. This combination of species has recently been proposed as the most suitable for reaching the quantum limit in hybrid atom-ion systems, due to its large mass ratio.