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相关论文: Superstrong Coupling of a Microwave Cavity to YIG …

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Using a sub-millimetre sized YIG (Yttrium Iron Garnet) sphere mounted in a magnetic field-focusing cavity, we demonstrate an ultra-high cooperativity of $10^5$ between magnon and photon modes at millikelvin temperatures and microwave…

Coherent coupling between spin wave excitations (magnons) and microwave photons in a cavity may disclose new paths to unconventional phenomena as well as for novel applications. Here, we present a systematic investigation on YIG (Yttrium…

We present an experimental study of the strong to ultra-strong coupling regimes at room temperature in frequency-reconfigurable 3D re-entrant cavities coupled with a YIG slab. The observed coupling rate, defined as the ratio of the coupling…

量子物理 · 物理学 2023-06-28 Guillaume Bourcin , Jeremy Bourhill , Vincent Vlaminck , Vincent Castel

Strong-coupling experiments based on magnons enable the exploration into on-chip demonstrations involving numerous long-lived excitations. Yttrium iron garnet (YIG) has been considered for decades as a gold standard material for magnonics…

We demonstrate strong coupling between travelling magnons in an Yttrium Iron Garnet film and 3D microwave cavity photons at milli-Kelvin temperatures. The coupling strength of $350$MHz or $7.3$\% of resonance frequency is observed. The…

材料科学 · 物理学 2017-10-19 Maxim Goryachev , Mikhail Kostylev , Michael E. Tobar

We report the study of interactions between cavity photons and paramagnetic Cr$^{3+}$ spins in a ruby (Cr$^{3+}$:Al$_2$O$_3$) Whispering Gallery mode (WGM) resonator. Examining the system at microwave frequencies and millikelvin…

材料科学 · 物理学 2014-11-25 Warrick G. Farr , Maxim Goryachev , Daniel L. Creedon , Michael E. Tobar

The cross-integration of spin-wave and superconducting technologies is a promising method for creating novel hybrid devices for future information processing technologies to store, manipulate, or convert data in both classical and quantum…

A systematic study of the coupling at room temperature between ferromagnetic resonance (FMR) and a planar resonator is presented. The chosen magnetic material is a ferrimagnetic insulator (Yttrium Iron Garnet: YIG) which is positioned on…

材料科学 · 物理学 2016-11-28 Vincent Castel , Alexandre Manchec , Jamal Ben Youssef

The ability to achieve strong-coupling has made cavity-magnon systems an exciting platform for the development of hybrid quantum systems and the investigation of fundamental problems in physics. Unfortunately, current experimental…

应用物理 · 物理学 2020-07-07 C. A. Potts , J. P. Davis

Several experimental implementations of cavity-magnon systems are presented. First an Yttrium Iron Garnet (YIG) block is placed inside a re-entrant cavity where the resulting hybrid mode is measured to be in the ultra strong coupling…

量子物理 · 物理学 2019-11-26 Graeme Flower , Maxim Goryachev , Jeremy Bourhill , Michael E. Tobar

Microwave-to-optical conversion via ferromagnetic magnons has so-far been limited by the optical coupling rates achieved in mm-scale whispering gallery mode resonators. Towards overcoming this limitation, we propose and demonstrate an open…

介观与纳米尺度物理 · 物理学 2020-09-10 J. A. Haigh , R. A. Chakalov , A. J. Ramsay

Magnons in ferrimagnetic insulators such as yttrium iron garnet (YIG) have recently emerged as promising candidates for coherent information processing in microwave circuits. Here we demonstrate optical whispering gallery modes of a YIG…

介观与纳米尺度物理 · 物理学 2016-09-21 Xufeng Zhang , Na Zhu , Chang-Ling Zou , Hong X. Tang

We demonstrate, at room temperature, the strong coupling of the fundamental and non-uniform magnetostatic modes of an yttrium iron garnet (YIG) ferrimagnetic sphere to the electromagnetic modes of a co-axial cavity. The well-defined field…

材料科学 · 物理学 2015-06-10 N. J. Lambert , J. A. Haigh , A. J. Ferguson

We experimentally investigate magnon-polaritons, arising in ferrimagnetic resonance experiments in a microwave cavity with a tuneable quality factor. To his end, we simultaneously measure the electrically detected spin pumping signal and…

In cavity magnonics, magnon-photon hybridization has been widely investigated for both fundamental studies and applications. Planar superconducting resonators operating at microwave frequencies have demonstrated the possibility to achieve…

超导电性 · 物理学 2025-09-11 Alberto Ghirri , Mattia Cavani , Claudio Bonizzoni , Marco Affronte

We investigate the microwave magnetic field confinement in several microwave 3D-cavities, using 3D finite-element analysis to determine the best design and achieve strong coupling between microwave resonant cavity photons and solid state…

量子物理 · 物理学 2016-11-03 J-M. Le Floch , N. Delhote , M. Aubourg , V. Madrangeas , D. Cros , S. Castelletto , M. E. Tobar

We present a generic theoretical framework to describe non-reciprocal microwave circulation in a multimode cavity magnonic system and assess the optimal performance of practical circulator devices. We show that high isolation (> 56 dB),…

应用物理 · 物理学 2020-05-06 Na Zhu , Xu Han , Chang-Ling Zou , Mingrui Xu , Hong X. Tang

We demonstrate the simultaneous realization of nonreciprocal coupling and ultra-strong coupling in cavity magnonics. By replacing a copper cylinder with a yttrium iron garnet cylinder within the photonic crystal, we achieve an ultra-strong…

应用物理 · 物理学 2025-03-07 Chi Zhang , Zhenhui Hao , Yongzhang Shi , Changjun Jiang , Xiling Li , C. K. Ong , Daqiang Gao , Guozhi Chai

Single crystal Lithium Ferrite (LiFe) spheres of sub-mm dimension are examined at mK temperatures, microwave frequencies and variable DC magnetic field, for use in hybrid quantum systems and condensed matter and fundamental physics…

强关联电子 · 物理学 2018-04-18 Maxim Goryachev , Stuart Watt , Jeremy Bourhill , Mikhail Kostylev , Michael E. Tobar

Coherent conversion from microwave to optical wave opens new research avenues towards long distant quantum network covering quantum communication, computing, and sensing out of the laboratory. Especially multi-mode enabled system is…

量子物理 · 物理学 2020-07-31 Yong Sup Ihn , Su-Yong Lee , Dongkyu Kim , Sin Hyuk Yim , Zaeill Kim
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