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首页> 外文期刊>電子情報通信学会技術研究報告. 電子デバイス. Electron Devices >Novel high-performance TFTs fabricated by selectively enlarging laser x'tallization (SELAX) technology
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Novel high-performance TFTs fabricated by selectively enlarging laser x'tallization (SELAX) technology

机译:通过选择性放大激光X.Tallization(Selax)技术制造的新型高性能TFT

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We have developed a new crystallization technique using the pulse-like modulated CW-laser (LD-pumped Nd:YVO{sub}4 SHG λ=532nm). During the each scanning, the irradiation is frequently suspended by pulse-like modulation so that the in-plane tensile strain in the irradiated areas is periodically relieved. By using this technique, large (4μm × 0.5μm average) columnar grains are uniformly obtained. The crystal orientation is {110} normal to the substrate and {100} normal to the growth direction, and surface at grain-boundaries is fairly flat. Surface density of trapping-state at grain-boundary in this poly-Si is larger than that in conventional excimer-laser crystallized poly-Si. However, due to large size of grains, volume density of trapping-state is rather small and, therefore, the height of potential barrier in conduction band is low. We have fabricated TFTs (typically W/L=4μm/2-4μm, t{sub}(ox)=100nm, t{sub}(Si)=50nm) on the glass-substrate and obtained the field-effect mobility of 480 cm{sup}2/Vs (n-ch.) and 130 cm{sup}2/Vs (p-ch.), respectively. The sub-threshold swing (S-value) is less than 0.2 V/dec for both types.
机译:我们开发了一种使用脉冲样调制CW激光(LD泵浦Nd:YVO {Sub} 4 SHGλ= 532nm)的新结晶技术。在每次扫描期间,辐射经常通过脉冲样调制悬挂,使得在周期性地减轻照射区域中的面内拉伸应变。通过使用该技术,均匀地获得大(4μm×0.5μm)柱状晶粒。晶体取向是{110}正常到基板和{100}正常到生长方向,并且晶界的表面相当平坦。该Poly-Si中晶界处的捕获状态的表面密度大于常规的准分子激光结晶多Si。然而,由于大尺寸的晶粒,捕获状态的体积密度相当小,因此,传导带中的潜在屏障的高度低。我们在玻璃基板上制造了TFT(通常为w / l =4μm/2-4μm,t {sub}(ox)= 100nm,t {sub}(si)= 50nm),并获得480的场效应移动性cm {sup} 2 / vs(n-ch。)和130cm {sup} 2 / vs(p-ch。)。对于两种类型,子阈值摆动(S值)小于0.2 V / DEC。

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