A Novel Electro-Thermal Model for Carbon Nanotube Interconnects
Journal of American Science • 2013
معلومات البحث
المؤلفون
Soliman, Walid, Abdolkader, Tarek M, El-Banna, Mohammed M, Gamal, Salah H
الكلمات المفتاحية
Not Available
المجلة العلمية
Journal of American Science
الناشر
Not Available
المجلد
9
العدد
4
الصفحات
Not Available
publication.type
International
رابط البحث
Not Available
المواد المرفقة
Not Available
الملخص
The electro-thermal effects have an important role in the study of metallic Single-Wall Carbon Nanotubes
(SWCNTs) for interconnect applications. Experimental data and careful modeling reveal that self-heating is
considerably significant in short nanotubes (1 < L < 15μm) under high-bias. The low-bias resistance of micron scale
SWCNTs is also found to be affected by optical phonon absorption (a scattering mechanism previously neglected)
above 250 K. In this work, we explore the effect of the thermo-electric current (Ihc) caused by the temperature
difference along the SWCNTs interconnects (thermo-electric properties). The thermo-electric current effect is
studied at low and high lengths of SWCNTs and at different biases.
(SWCNTs) for interconnect applications. Experimental data and careful modeling reveal that self-heating is
considerably significant in short nanotubes (1 < L < 15μm) under high-bias. The low-bias resistance of micron scale
SWCNTs is also found to be affected by optical phonon absorption (a scattering mechanism previously neglected)
above 250 K. In this work, we explore the effect of the thermo-electric current (Ihc) caused by the temperature
difference along the SWCNTs interconnects (thermo-electric properties). The thermo-electric current effect is
studied at low and high lengths of SWCNTs and at different biases.
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