Hybrid Photoexcitation in Undoped Diamond by Mid-Infrared Femtosecond Laser Pulses

IF 1.4 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY JETP Letters Pub Date : 2024-10-15 DOI:10.1134/S0021364024602604
S. I. Kudryashov, N. A. Smirnov, S. G. Buga, V. D. Blank, P. P. Pakholchuk, N. I. Busleev, N. V. Kornilov
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Abstract

Direct interband and intragap photoexcitation by intense mid-infrared (4.0 and 4.7 μm) femtosecond (fs) laser pulses was explored in ultrapure chemical-vapor deposited (CVD) diamond via acquisition of characteristic ultraviolet photoluminescence of free excitons and A-band photoluminescence of electrons anchored at deep donor–acceptor or dislocation-related traps, respectively. At lower laser intensities (<10 TW/cm2) the excitonic photoluminescence yields exhibit highly nonlinear dependences with Iλ2-scaling and power slopes N ≈ 17 (4.0 μm) and 14 (4.7 μm), still insufficient to cross over the direct bandgap (≥6.5 eV) by ≈1.2 and 2.8 eV, respectively. Similarly high slope of ≈9 (4.7 μm) for intragap (≥3.5 eV) photo-population of donor–acceptor traps is still insufficient for their direct excitation by ≈1 eV. At the intermediate Iλ2-dependent values of the Keldysh parameter γ ∼ 1 such incomplete multiphoton excitation anticipates the hybrid total “multiphoton + tunneling” photoexcitation generally predicted by the Keldysh theory, but never unambiguously experimentally demonstrated. At higher laser intensities (>10 TW/cm2) both the excitonic and A-band photoluminescence yields exhibit (sub)linear slopes, apparently, indicating formation of more strongly absorbing electron–hole plasma. These findings shed light on the hybrid multiphoton + tunneling character of Keldysh photoexcitation at intermediate values γ and pave the way to defect/impurity band engineering of intragap nonlinear optical properties in bulk dielectrics for their precise fs-laser nanomodification.

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中红外飞秒激光脉冲在未掺杂金刚石中的混合光激发
在超纯化学气相沉积(CVD)金刚石中,通过获取自由激子的特征紫外光发光和锚定在深部供体-受体或位错相关陷阱的电子的 A 波段光致发光,探索了强中红外(4.0 和 4.7 μm)飞秒 (fs) 激光脉冲的直接带间和隙内光激发。在较低的激光强度下(10 TW/cm2),激子光致发光产率表现出高度非线性依赖性,Iλ2 缩放和功率斜率 N ≈ 17(4.0 μm)和 14(4.7 μm),但仍不足以分别跨越直接带隙(≥6.5 eV)≈1.2 和 2.8 eV。施主-受体阱的隙内(≥3.5 eV)光填充的斜率≈9(4.7 μm)同样很高,但仍不足以使它们直接激发≈1 eV。在凯尔迪什参数 γ ∼ 1 取决于 Iλ2 的中间值时,这种不完全的多光子激发预示着凯尔迪什理论通常预测的 "多光子 + 隧道 "混合总光激发,但从未在实验中明确证实过。在较高的激光强度下(10 TW/cm2),激子和 A 波段光致发光产率都呈现(亚)线性斜率,这显然表明形成了吸收更强的电子-空穴等离子体。这些发现揭示了凯尔迪什光激发在中间值 γ 下的混合多光子 + 隧道特性,并为块状电介质中隙内非线性光学特性的缺陷/杂质带工程铺平了道路,以实现精确的fs激光纳米调制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
JETP Letters
JETP Letters 物理-物理:综合
CiteScore
2.40
自引率
30.80%
发文量
164
审稿时长
3-6 weeks
期刊介绍: All topics of experimental and theoretical physics including gravitation, field theory, elementary particles and nuclei, plasma, nonlinear phenomena, condensed matter, superconductivity, superfluidity, lasers, and surfaces.
期刊最新文献
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