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硼掺杂金刚石中的价间等离子体

Intervalence plasmons in boron-doped diamond.

作者信息

Bhattacharya Souvik, Boyd Jonathan, Reichardt Sven, Allard Valentin, Talebi Amir Hossein, Maccaferri Nicolò, Shenderova Olga, Lereu Aude L, Wirtz Ludger, Strangi Giuseppe, Sankaran R Mohan

机构信息

Department of Nuclear, Plasma, and Radiological Engineering, The Grainger College of Engineering, University of Illinois Urbana-Champaign, Champaign, IL, USA.

Department of Physics, Case Western Reserve University, Cleveland, OH, USA.

出版信息

Nat Commun. 2025 Jan 14;16(1):444. doi: 10.1038/s41467-024-55353-0.

Abstract

Doped semiconductors can exhibit metallic-like properties ranging from superconductivity to tunable localized surface plasmon resonances. Diamond is a wide-bandgap semiconductor that is rendered electronically active by incorporating a hole dopant, boron. While the effects of boron doping on the electronic band structure of diamond are well-studied, any link between charge carriers and plasmons has never been shown. Here, we report intervalence plasmons in boron-doped diamond, defined as collective electronic excitations between the valence subbands, opened up by the presence of holes. Evidence for these low-energy excitations is provided by valence electron energy loss spectroscopy and near-field infrared spectroscopy. The measured spectra are subsequently reproduced by first-principles calculations based on the contribution of intervalence band transitions to the dielectric function. Our calculations also reveal that the real part of the dielectric function exhibits a crossover characteristic of metallicity. These results suggest a new mechanism for inducing plasmon-like behavior in doped semiconductors, and the possibility of attaining such properties in diamond, a key emerging material for quantum information technologies.

摘要

掺杂半导体可以表现出从超导到可调谐局域表面等离子体共振等类似金属的特性。金刚石是一种宽带隙半导体,通过掺入空穴掺杂剂硼而具有电子活性。虽然硼掺杂对金刚石电子能带结构的影响已得到充分研究,但从未显示出电荷载流子与等离子体之间的任何联系。在此,我们报道了硼掺杂金刚石中的价间等离子体,它被定义为由空穴的存在所开启的价子带之间的集体电子激发。价电子能量损失光谱和近场红外光谱为这些低能激发提供了证据。随后,基于价间带跃迁对介电函数的贡献,通过第一性原理计算再现了测量光谱。我们的计算还表明,介电函数的实部表现出金属性的交叉特征。这些结果提出了一种在掺杂半导体中诱导类似等离子体行为的新机制,以及在金刚石中获得此类特性的可能性,金刚石是量子信息技术的一种关键新兴材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05df/11733272/0033b85ce7ab/41467_2024_55353_Fig1_HTML.jpg

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