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首页> 外文期刊>Low temperature physics: Simultaneous Russian - English publication >Sensitized photon avalanche nanothermometry in Pr3+ and Yb3+ co-doped NaYF4 colloidal nanoparticles
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Sensitized photon avalanche nanothermometry in Pr3+ and Yb3+ co-doped NaYF4 colloidal nanoparticles

机译:Pr3+和Yb3+共掺杂NaYF4胶体纳米颗粒中的敏化光子雪崩纳米测温

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摘要

Photon avalanche (PA) is a highly nonlinear luminescence phenomenon that occurs in lanthanide doped materials. PA exhibits a very steep power law relationship between luminescence intensity and the optical pump power. Due to the mechanism of PA emission, even weak perturbations to the energy looping and energy distribution within excited levels of lanthanide emitters are expected to significantly modify luminescent properties. Therefore, in this work, we experimentally study the impact of temperature (from - 175 to 175 ?, with 25 ? steps) on the sensitized PA emission in NaYF4 nanoparticles co-doped with 15% of Yb3+ and 0.5% of Pr3+ ions under 852 nm pumping wavelength. Significant variations of the PA nonlinearity (S = 4.5-9), PA gain (from 50 up to 175), and PA threshold (from 100 up to 700 kW/cm(2)) were observed under temperature rise from - 175 to 175 ?, respectively. The relative temperature sensitivities based on luminescence intensity changes were larger than 1.5% ?(-1) in the whole temperature range, reaching the maximal value of 7.5% ?(-1) at 0 ?. Moreover, a new thermometric parameter was proposed, namely, the PA pump power threshold, which exhibited over 0.5% ?(-1) relative sensitivities in the same wide temperature range. Owing to PA properties, the temperature sensitivity range and the corresponding relative sensitivities may be intentionally tuned by selecting the appropriate pump intensity in respect to the power dependence relationship. These studies not only provide a better understanding of fundamental processes and susceptibility of the sensitized photon avalanche emission to temperature variation, but also show the possibility of using PA materials as sensitive (nano)thermometers.
机译:光子雪崩(PA)是一个高度非线性发光的现象,发生在镧系元素掺杂材料。法律发光强度之间的关系和光学泵浦功率。考评的排放,甚至弱扰动能量循环和能量分布兴奋的镧系元素排放水平预计将大幅修改发光属性。实验研究温度的影响(25——175年到175年?,?敏化PA NaYF4纳米颗粒的排放co-doped Yb3 + 15%和0.5%的Pr3 +离子在852 nm波长。变化的PA非线性(4.5 S = 9),获得(从50到175),PA阈值(从100到700千瓦/厘米(2))下观察温度从- 175上升到175 ?分别。基于发光强度的敏感性变化大于1.5% ?(1)在整个温度范围内,达到的最大价值(1)在0 7.5% ?。提出了参数,即泵功率阈值,展出超过0.5% ? (1)在相同的相对敏感性宽温度范围内。温度灵敏度和范围相应的相对敏感性故意通过选择适当的调整泵强度方面依赖的力量的关系。更好的理解和基本流程敏敏化的光子雪崩排放温度变化,但也显示用PA材料的可能性敏感(纳米)温度计。

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