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Improving Metal-Oxide-Metal (MOM) Diode Performance nVia the Optimization of the Oxide Layer

机译:通过氧化物层的优化提高金属氧化物金属(MOM)二极管的性能

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摘要

Small area metal-oxide-metal (MOM) diodes are being investigated in many research groups for the detection of THz frequency radiation. In order to create a high-speed rectifying device, the central oxide layer of the MOM structure must be thin and have known physical characteristics. The thickness, structure and uniformity of the oxide can be controlled during the fabrication process. In the work presented here, the effects of both oxygen plasma concentration and annealing temperature during fabrication of ({hbox {Ti}/hbox {TiO}_{x}/hbox {Pt}}) MOM diodes have been explored. It has been found that, by reducing the oxygen gas concentration from previous work, the ({hbox {TiO}_{x}}) layer can be more repeatable and uniform. Furthermore, for an anneal temperature up to a threshold temperature in the ({200^{circ }hbox {C}}) to ({250^{circ }hbox {C}}) range, the performance of the diodes is excellent, with a value of zero-bias curvature coefficient (CCZB) that can be up to ({4.6,hbox {V}^{-1}}). For higher temperature treatments, the value of CCZB decreases to a maximum of ({2.0,hbox {V}^{-1}}). Similar trends in AC tests can be seen for voltage and current responsivity values.
机译:许多研究小组正在研究小面积金属氧化物金属(MOM)二极管,以检测THz频率辐射。为了创建高速整流装置,MOM结构的中央氧化物层必须薄且具有已知的物理特性。可以在制造过程中控制氧化物的厚度,结构和均匀性。在此处介绍的工作中,已经研究了制造({hbox {Ti} / hbox {TiO} _ {x} / hbox {Pt}})MOM二极管期间氧等离子体浓度和退火温度的影响。已经发现,通过减少来自先前工作的氧气浓度,({hbox {TiO} _ {x}})层可以更可重复且均匀。此外,对于最高在({200 ^ {h} {box})至({250 ^ hbox {C}})范围内的阈值温度的退火温度,二极管的性能非常好,零偏曲率系数(CCZB)的值可以达到({4.6,hbox {V} ^ {-1}})。对于高温处理,CCZB的值减小到最大值({2.0,hbox {V} ^ {-1}})。对于电压和电流响应度值,在交流测试中可以看到类似的趋势。

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