GSTDTAP  > 地球科学
DOI10.1038/s41586-020-2257-1
Quantum entanglement between an atom and a molecule
Trisos, Christopher H.1,2,3; Merow, Cory4; Pigot, Alex L.5
2020-04-08
发表期刊NATURE
ISSN0028-0836
EISSN1476-4687
出版年2020
卷号581期号:7808页码:273-+
文章类型Article
语种英语
国家Peoples R China; USA
英文关键词

Conventional information processors convert information between different physical carriers for processing, storage and transmission. It seems plausible that quantum information will also be held by different physical carriers in applications such as tests of fundamental physics, quantum enhanced sensors and quantum information processing. Quantum controlled molecules, in particular, could transduce quantum information across a wide range of quantum bit (qubit) frequencies-from a few kilohertz for transitions within the same rotational manifold(1), a few gigahertz for hyperfine transitions, a few terahertz for rotational transitions, to hundreds of terahertz for fundamental and overtone vibrational and electronic transitions-possibly all within the same molecule. Here we demonstrate entanglement between the rotational states of a (CaH+)-Ca-40 molecular ion and the internal states of a Ca-40(+) atomic ion(2). We extend methods used in quantum logic spectroscopy(1,3) for pure-state initialization, laser manipulation and state readout of the molecular ion. The quantum coherence of the Coulomb coupled motion between the atomic and molecular ions enables subsequent entangling manipulations. The qubit addressed in the molecule has a frequency of either 13.4 kilohertz(1) or 855 gigahertz(3), highlighting the versatility of molecular qubits. Our work demonstrates how molecules can transduce quantum information between qubits with different frequencies to enable hybrid quantum systems. We anticipate that our method of quantum control and measurement of molecules will find applications in quantum information science, quantum sensors, fundamental and applied physics, and controlled quantum chemistry.


Quantum entanglement is realized between rotational levels of a molecular ion with energy differences spanning several orders of magnitude and long-lived internal states of a single atomic ion.


领域地球科学 ; 气候变化 ; 资源环境
收录类别SCI-E
WOS记录号WOS:000534818200009
WOS关键词STATE DETECTION ; SPECTROSCOPY ; GENERATION ; MANIPULATION ; TRANSITION ; DYNAMICS
WOS类目Multidisciplinary Sciences
WOS研究方向Science & Technology - Other Topics
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/281309
专题地球科学
资源环境科学
气候变化
作者单位1.Univ Cape Town, African Climate & Dev Initiat, Cape Town, South Africa;
2.Natl Socioenvironm Synth Ctr SESYNC, Annapolis, MD USA;
3.Univ Cape Town, Ctr Stat Ecol Environm & Conservat, Cape Town, South Africa;
4.Univ Connecticut, Ecol & Evolutionary Biol, Storrs, CT USA;
5.UCL, Ctr Biodivers & Environm Res, Dept Genet Evolut & Environm, London, England
推荐引用方式
GB/T 7714
Trisos, Christopher H.,Merow, Cory,Pigot, Alex L.. Quantum entanglement between an atom and a molecule[J]. NATURE,2020,581(7808):273-+.
APA Trisos, Christopher H.,Merow, Cory,&Pigot, Alex L..(2020).Quantum entanglement between an atom and a molecule.NATURE,581(7808),273-+.
MLA Trisos, Christopher H.,et al."Quantum entanglement between an atom and a molecule".NATURE 581.7808(2020):273-+.
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