论文标题

在氧化物表面上O LVV螺旋螺旋过渡后低能电子发射的直接证据

Direct evidence for low-energy electron emission following O LVV Auger transitions at oxide surfaces

论文作者

Fairchild, Alexander J., Chirayath, Varghese A., Sterne, Philip A., Gladen, Randall W., Koymen, Ali R., Weiss, Alex H.

论文摘要

氧气是宇宙中第三大元素,在凝结物质和生物系统的化学中起关键作用。在这里,我们报告了迄今未探索的氧化螺旋钻过渡的证据,在氧化物中,价带电子填充了2s氧气状态的空缺,从而传递了足够的能量以允许电子发射。我们使用了$ \ sim $ 1 ev的动力学能量的一束光束,通过物质 - 逆时针ni灭创建O 2S孔。这使得消除了大型二级电子背景,该背景排除了通过此过程发出的低能电子的确定测量。我们的实验表明,在吸附氧和氧化物表面的O 2s孔螺旋e衰变后的低能电子发射非常有效。具体而言,我们的结果表明,O 2S孔的螺旋螺旋衰减后的低能电子发射几乎与电子发射效率一样,在Tio $ _2 $中O 1S孔放松后的电子发射效率也一样。这对理解螺旋刺激的离子解吸,库仑衰减,光动力癌症疗法具有重要意义,并可能对辐射引起的反应性部位进行重要见解,以进行腐蚀和催化。

Oxygen, the third most abundant element in the universe, plays a key role in the chemistry of condensed matter and biological systems. Here, we report evidence for a hitherto unexplored Auger transition in oxides, where a valence band electron fills a vacancy in the 2s state of oxygen, transferring sufficient energy to allow electron emission. We used a beam of positrons with kinetic energies of $\sim$1 eV to create O 2s holes via matter-antimatter annihilation. This made possible the elimination of the large secondary electron background that has precluded definitive measurements of the low-energy electrons emitted through this process. Our experiments indicate that low-energy electron emission following the Auger decay of O 2s holes from adsorbed oxygen and oxide surfaces are very efficient. Specifically, our results indicate that the low energy electron emission following the Auger decay of O 2s hole is nearly as efficient as electron emission following the relaxation of O 1s holes in TiO$_2$. This has important implications for the understanding of Auger-stimulated ion desorption, Coulombic decay, photodynamic cancer therapies, and may yield important insights into the radiation-induced reactive sites for corrosion and catalysis.

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