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对吸附在超导体NbSe上的铽酞菁(TbPc)物种分子内磁交换相互作用能的宇 - 芝田 - 鲁西诺夫态及非弹性隧穿光谱的观测

Observation of Yu-Shiba-Rusinov States and Inelastic Tunneling Spectroscopy for Intramolecule Magnetic Exchange Interaction Energy of Terbium Phthalocyanine (TbPc) Species Adsorbed on Superconductor NbSe.

作者信息

Shahed Syed Mohammad Fakruddin, Ara Ferdous, Hossain Mohammad Ikram, Katoh Keiichi, Yamashita Masahiro, Komeda Tadahiro

机构信息

Institute of Multidisciplinary Research for Advanced Materials (IMRAM, Tagen), Tohoku University, 2-1-1, Katahira, Aoba-Ku, Sendai 9800877, Japan.

Department of Chemistry, Graduate School of Science, Josai University, 1-1 Keyakidai, Sakado, Saitama 350-0295, Japan.

出版信息

ACS Nano. 2022 May 24;16(5):7651-7661. doi: 10.1021/acsnano.1c11221. Epub 2022 Apr 25.

Abstract

We investigated the spin properties of the terbium phthalocyanine (TbPc) species adsorbed on the superconductor NbSe surface using scanning tunneling microscopy and spectroscopy. TbPc is a molecule in a class of single-molecule magnets (SMMs), and the use of superconductor electrodes attracts attention for the application to the devices using the spin degree of freedom. TbPc is a building block of TbPc and can reveal the spin component's behavior. In the experiment, TbPc species were placed on the surface of the superconductor NbSe. We measured Yu-Shiba-Rusinov (YSR) states caused by the interaction between the superconducting state and magnetic impurity and inelastic tunneling spectroscopy (IETS) for the spin excitation, below 1 K. We also measured the Kondo state formed by the magnetic singlet formation. We detected the radical spin at the ligand position of the TbPc by the presence of the Kondo peak and demonstrated that the radical spin forms the YSR feature. In addition, the exchange interaction energy () between the spins of the radical ligand (Pc) and the center 4f metal atom (Tb) is determined by using the IETS technique. is a critical parameter that determines the blocking temperature, below which the sample behaves as an SMM. IETS results show that the statistical distribution of has peaked at 1.3, 1.6, and 1.9 meV. The energy range is comparable to the recent theoretical calculation result. In addition, we show that the energy variation is correlated with the bonding configuration of TbPc.

摘要

我们使用扫描隧道显微镜和光谱学研究了吸附在超导体NbSe表面的铽酞菁(TbPc)物种的自旋特性。TbPc是一类单分子磁体(SMMs)中的一种分子,超导体电极的使用因其在利用自旋自由度的器件中的应用而备受关注。TbPc是TbPc的一个组成部分,能够揭示自旋成分的行为。在实验中,将TbPc物种放置在超导体NbSe的表面。我们在低于1 K的温度下测量了由超导态与磁性杂质之间的相互作用引起的宇称-施巴-鲁西诺夫(YSR)态以及用于自旋激发的非弹性隧穿光谱(IETS)。我们还测量了由磁单重态形成产生的近藤态。通过近藤峰的存在,我们检测到了TbPc配体位置处的自由基自旋,并证明自由基自旋形成了YSR特征。此外,利用IETS技术确定了自由基配体(Pc)和中心4f金属原子(Tb)的自旋之间的交换相互作用能()。是决定阻塞温度的关键参数,低于该温度时样品表现为SMM。IETS结果表明,的统计分布在1.3、1.6和1.9 meV处出现峰值。该能量范围与最近的理论计算结果相当。此外,我们表明能量变化与TbPc的键合构型相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/739d/9134493/0209a683dcd3/nn1c11221_0001.jpg

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