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首页> 外文期刊>ACS applied materials & interfaces >Nitrogen-Vacancy Centers in Diamond for High-Performance Detection of Vacuum Ultraviolet, Extreme Ultraviolet, and X-rays
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Nitrogen-Vacancy Centers in Diamond for High-Performance Detection of Vacuum Ultraviolet, Extreme Ultraviolet, and X-rays

机译:金刚石中的氮空位中心,用于高性能检测真空紫外线,极端紫外线和X射线

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摘要

Fluorescent nanodiamonds (FNDs) containing nitrogen-vacancy (NV) centers as built-in fluorophores exhibit a nearly constant emission profile over 550-750 nm upon excitation by vacuum-ultraviolet (VUV), extreme ultraviolet (EUV), and X-radiations from a synchrotron source over the energy (wavelength) range of 6.2-1450 eV (0.86-200 nm). The photoluminescence (PL) quantum yield of FNDs increases steadily with the increasing excitation energy, attaining a value as great as 1700% at 700 eV (1.77 nm). Notably, the yield curve is continuous, having no gap in the VUV to X-ray region. In addition, no significant PL intensity decreases were observed for hours. Applying the FND sensor to measure the absorption cross-sections of gaseous O-2 over 110-200 nm and comparing the measurements with the sodium-salicylate scintillator, we obtained results in agreement with each other within 5%. The superb photostability and broad applicability of FNDs offer a promising solution for the long-standing problem of lacking a robust and reliable detector for VUV, EUV, and X-radiations.
机译:含有氮气空位(NV)中心的荧光纳米胺(FNDS)作为内置荧光团在激发真空 - 紫外(VUV),极端紫外(EUV)和X射线时,在550-750nm上表现出几乎恒定的发射曲线。通过能量(波长)范围为6.2-1450eV(0.86-200nm)的同步rotron源。 CNDs的光致发光(PL)量子产率随着激发能量的增加而稳定增加,达到700eV(1.77nm)的值大至1700%。值得注意的是,产量曲线是连续的,在VUV中没有间隙到X射线区域。此外,几小时没有观察到显着的PL强度降低。应用FND传感器以测量110-200nm超过110-200nm的吸收横截面,并将测量与水杨酸钠闪烁体进行比较,我们在5%内达成协议。 FNDS的极高的光稳定性和广泛适用性为长期存在的问题提供了有希望的解决方案,即缺乏VUV,EUV和X-辐射的稳健和可靠的探测器。

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