Zugriffsnummer 35575
Dokumenttyp Zeitschriftenartikel
Sprache Englisch
Titel Non-destructive state detection for quantum logic spectroscopy of molecular ions
Autor(in); Institution
Wolf, Fabian; QUEST Institute for Experimental Quantum Metrology, PTB-Braunschweig
Wan, Yong; QUEST Institute for Experimental Quantum Metrology, PTB-Braunschweig
Heip, Jan Christoph; QUEST Institute for Experimental Quantum Metrology, PTB-Braunschweig
Gebert, Florian; QUEST Institute for Experimental Quantum Metrology, PTB-Braunschweig
Shi, Chunyan; QUEST Institute for Experimental Quantum Metrology, PTB-Braunschweig
Schmidt, Piet O.; Institut für Quantenoptik, Leibniz Universität Hannover, GERMANY
Quelle/Jahr Nature: 530 (2016), 7591, 457 - 460
ISSN 0028-0836
DOI
Verlag London: Nature Publishing Group
Freie Schlagworte molecular ions ; non-destructive detection ; quantum logic ; quantum logic spectroscopy ; ion trapping ; paul trap
Zusammenfassung Precision laser spectroscopy of cold and trapped molecular ions is a powerful tool in fundamental physics—used, for example, in determining fundamental constants, testing for their possible variation in the laboratory, and searching for a possible electric dipole moment of the electron. However, the absence of cycling transitions in molecules poses a challenge for direct laser cooling of the ions, and for controlling and detecting their quantum states. Previously used state-detection techniques based on photodissociation or chemical reactions are destructive and therefore inefficient, restricting the achievable resolution in laser spectroscopy. Here, we experimentally demonstrate non-destructive detection of the quantum state of a single trapped molecular ion through its strong Coulomb coupling to a well controlled, co-trapped atomic ion. An algorithm based on a state-dependent optical dipole force changes the internal state of the atom according to the internal state of the molecule. We show that individual quantum states in the molecular ion can be distinguished by the strength of their coupling to the optical dipole force. We also observe quantum jumps (induced by black-body radiation) between rotational states of a single molecular ion. Using the detuning dependence of the state-detection signal, we implement a variant of quantum logic spectroscopy of a molecular resonance. Our state-detection technique is relevant to a wide range of molecular ions, and could be applied to state-controlled quantum chemistry and to spectroscopic investigations of molecules that serve as probes for interstellar clouds.

Zitierung

Wolf, F., Wan, Y., Heip, J. C., Gebert, F., Shi, C., & Schmidt, P. O. (2016). Non-destructive state detection for quantum logic spectroscopy of molecular ions. Nature, 530(7591), 457–460. https://doi.org/10.1038/nature16513

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