Drain bias induced threshold voltage variation in short channel polycrystalline silicon (polysilicon) thin-film transistors (TFTs) are investigated, combining experimental measurements and two-dimensional numerical simulations. We show that drain induced barrier lowering and floating body effects, induced by impact ionization, are the main causes of such variations. Field enhanced mechanisms, causing leakage current, tend to mitigate the effect of impact ionization, since they provide an enhanced recombination rate in the high field region. This result is in contrast to what is suggested for silicon-on-insulator devices and also applied to polysilicon TFTs, where leakage current is assumed to contribute to floating body effects.

Role of field enhanced mechanisms and impact ionization on the threshold voltage of short channel polycrystalline silicon thin film transistors

Gaucci P;Valletta A;Mariucci L;Pecora A;Maiolo L;Fortunato G
2008

Abstract

Drain bias induced threshold voltage variation in short channel polycrystalline silicon (polysilicon) thin-film transistors (TFTs) are investigated, combining experimental measurements and two-dimensional numerical simulations. We show that drain induced barrier lowering and floating body effects, induced by impact ionization, are the main causes of such variations. Field enhanced mechanisms, causing leakage current, tend to mitigate the effect of impact ionization, since they provide an enhanced recombination rate in the high field region. This result is in contrast to what is suggested for silicon-on-insulator devices and also applied to polysilicon TFTs, where leakage current is assumed to contribute to floating body effects.
2008
Istituto per la Microelettronica e Microsistemi - IMM
impact ionisation
leakage currents
semiconductor thin films
thin film transistors
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/49687
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