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Dive into the research topics where Zoe Yan is active.

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Featured researches published by Zoe Yan.


Science | 2017

Second-scale nuclear spin coherence time of ultracold 23 Na 40 K molecules

Jee Woo Park; Zoe Yan; Huanqian Loh; Sebastian Will; Martin Zwierlein

Extending the coherence time of molecules Quantum properties of atoms and molecules can be exploited for precision measurements or quantum information processing. The complex state structure of molecules can be exploited, but it is hard to preserve the coherence between pairs of those states in applications. Park et al. created fermionic molecules of NaK in the rovibrational ground state that maintained coherence between their nuclear spin states on a time scale of 1 second. This long coherence time makes dipolar ultracold molecules a valuable quantum resource. Science, this issue p. 372 The use of nuclear spin states extends the coherence time of dipolar ultracold molecules, making them a valuable quantum resource. Coherence, the stability of the relative phase between quantum states, is central to quantum mechanics and its applications. For ultracold dipolar molecules at sub-microkelvin temperatures, internal states with robust coherence are predicted to offer rich prospects for quantum many-body physics and quantum information processing. We report the observation of stable coherence between nuclear spin states of ultracold fermionic sodium-potassium (NaK) molecules in the singlet rovibrational ground state. Ramsey spectroscopy reveals coherence times on the scale of 1 second; this enables high-resolution spectroscopy of the molecular gas. Collisional shifts are shown to be absent down to the 100-millihertz level. This work opens the door to the use of molecules as a versatile quantum memory and for precision measurements on dipolar quantum matter.


Physical Review Letters | 2016

Coherent Microwave Control of Ultracold ^{23}Na^{40}K Molecules.

Sebastian Will; Jee Woo Park; Zoe Yan; Huanqian Loh; Martin Zwierlein


Bulletin of the American Physical Society | 2018

A heavy impurity immersed in a Bose-Einstein Condensate

Zoe Yan; Yiqi Ni; Carsten Robens; Martin Zwierlein


Bulletin of the American Physical Society | 2017

Coherent microwave control of ultracold

Zoe Yan; Yiqi Ni; Jee Woo Park; Sebastian Will; Huanqian Loh; Kang Kuen Ni; Martin Zwierlein


Bulletin of the American Physical Society | 2017

^{\mathrm{23}}

Zoe Yan; Yiqi Ni; Jee Woo Park; Sebastian Will; Huanqian Loh; Kang Kuen Ni; Martin Zwierlein


Physical Review Letters | 2016

Na

Sebastian Will; Jee Woo Park; Zoe Yan; Huanqian Loh; Martin Zwierlein


Bulletin of the American Physical Society | 2016

^{\mathrm{40}}

Sebastian Will; Jee Woo Park; Zoe Yan; Huanqian Loh; Martin Zwierlein


Bulletin of the American Physical Society | 2016

K molecules

Zoe Yan; Jee Woo Park; Huanqian Loh; Sebastian Will; Martin Zwierlein


Bulletin of the American Physical Society | 2016

Microwave dressing of ultracold

Zoe Yan; Huanqian Loh; Jee Woo Park; Sebastian Will; Martin Zwierlein


Bulletin of the American Physical Society | 2016

^{\mathrm{23}}

Jee Woo Park; Zoe Yan; Huanqian Loh; Sebastian Will; Martin Zwierlein

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Martin Zwierlein

Massachusetts Institute of Technology

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Huanqian Loh

Massachusetts Institute of Technology

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Jee Woo Park

Massachusetts Institute of Technology

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