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Single-particle plasmon resonance spectroscopy of phase transition in vanadium dioxide

机译:二氧化钒相变的单粒子等离子体共振光谱

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摘要

We demonstrate thermally controlled plasmon resonance modulation of single gold nanoparticles on vanadium dioxide thin films by performing dark-field spectroscopy measurements at different temperatures. The plasmon resonance of the nanoparticles exhibits a significant blueshift in the visible range when the vanadium dioxide film undergoes its insulator-to-metal phase transition around 67 deg C. More importantly, the resonance shift shows a clear hysteresis, mirroring the behavior of the vanadium dioxide film. At a fixed wavelength, the scattering intensity of Au particles also shows a hysteretic behavior decorated with an overshoot before (after) the insulator-metal (metal-insulator) phase transition of the vanadium dioxide film, suggesting that the nanoparticle is probing local variations in the phase transition.
机译:通过在不同温度下执行暗场光谱测量,我们证明了二氧化钒薄膜上单个金纳米颗粒的热控制等离子体共振调制。当二氧化钒薄膜在67摄氏度左右经历其绝缘体-金属相变时,纳米粒子的等离振子共振在可见光范围内表现出明显的蓝移。更重要的是,该共振移显示出明显的磁滞现象,反映出钒的行为二氧化膜。在固定波长下,Au粒子的散射强度还显示出滞后行为,并在二氧化钒薄膜的绝缘体-金属(金属-绝缘体)相变之前(之后)出现过冲,表明该纳米粒子正在探测中的局部变化。相变。

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