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Based on scattering theory, the resistance of polycrystalline interconnection originates mainly from vacancies and voids scattering at grain boundary. Through using the free volume concept, the scattering process at grain boundary is simulated, and a non-Gaussian model of noise is establised. The model shows the earlier electromigration noise is gaussian, through electromigration process, noise turns non-Gaussian, which reflects the change of dynamic mechanism. Bicoherence coefficient is used to characterize the non-Gaussian noise. Finally, experimental result validates the model.
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Keywords:
- electromigration /
- noise /
- non-Gaussian
[1] Vandamme L J K 1994 IEEE Trans. Electron Dev. 41 2176
[2] He L, Du L, Zhuang Y Q, Chen H, Chen W H, Li W H, Sun P 2010 Chin. Phys. B 19 097202
[3] He L, Du L, Zhuang Y Q, Chen C X, Wei T, Huang X J 2007 Acta Phys. Sin. 56 7176 (in Chinese) [何亮, 杜磊, 庄奕琪, 陈春霞, 卫涛, 黄晓君 2007 56 7176]
[4] He L, Du L, Zhuang Y Q, Li W H, Chen J P 2008 Acta Phys. Sin. 57 6545 (in Chinese) [何亮, 杜磊, 庄奕琪, 李伟华, 陈建平 2008 57 6545]
[5] Dutta P, Horn P M 1981 Rev. Modern Phys. 53 497
[6] Voss R F, Clarke J 1976 Phys. Rev. B 13 556
[7] Seidler G T, Solin S A 1996 Phys. Rev. B 53 9753
[8] Antal T, Droz M 2001 Phys. Rev. Lett. 87 24060
[9] Hinich M J, Wilson G R 1990 IEEE Trans. Acoust. Speech Signal Proc. 38 1126
[10] Du L, Zhuang Y Q, Xue L J 2002 Acta Phys. Sin. 51 2836 (in Chinese) [杜磊, 庄奕棋, 薛丽君 2002 51 2836]
[11] Dannenberg R, King A H 2000 J. Appl. Phys. 88 2623
[12] Huang J 1988 Physics of Amorphous Solids (Beijing: Peking University Publishing House) (in Chinese) [黄均 1988 非晶态固体物理学(北京:北京大学出版社)]
[13] Sheng Z, Xie S Q, Pan C Y 1989 Probability Theory and Mathematical Statistics (Beijing: China Higher Education Press) (in Chinese) [盛骤, 谢式千, 潘承毅 1989 概率论与数理统计(北京:高等教育出版社)]
[14] Doron K, Hagit M 1990 IEEE Trans. Acoust. Speech Signal Proc. 38 901
[15] Doan J C, Bravman J C, Flinn P A, Marieb T N 1998 Mater. Res. Soc. Sym. Proc. 516 83
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[1] Vandamme L J K 1994 IEEE Trans. Electron Dev. 41 2176
[2] He L, Du L, Zhuang Y Q, Chen H, Chen W H, Li W H, Sun P 2010 Chin. Phys. B 19 097202
[3] He L, Du L, Zhuang Y Q, Chen C X, Wei T, Huang X J 2007 Acta Phys. Sin. 56 7176 (in Chinese) [何亮, 杜磊, 庄奕琪, 陈春霞, 卫涛, 黄晓君 2007 56 7176]
[4] He L, Du L, Zhuang Y Q, Li W H, Chen J P 2008 Acta Phys. Sin. 57 6545 (in Chinese) [何亮, 杜磊, 庄奕琪, 李伟华, 陈建平 2008 57 6545]
[5] Dutta P, Horn P M 1981 Rev. Modern Phys. 53 497
[6] Voss R F, Clarke J 1976 Phys. Rev. B 13 556
[7] Seidler G T, Solin S A 1996 Phys. Rev. B 53 9753
[8] Antal T, Droz M 2001 Phys. Rev. Lett. 87 24060
[9] Hinich M J, Wilson G R 1990 IEEE Trans. Acoust. Speech Signal Proc. 38 1126
[10] Du L, Zhuang Y Q, Xue L J 2002 Acta Phys. Sin. 51 2836 (in Chinese) [杜磊, 庄奕棋, 薛丽君 2002 51 2836]
[11] Dannenberg R, King A H 2000 J. Appl. Phys. 88 2623
[12] Huang J 1988 Physics of Amorphous Solids (Beijing: Peking University Publishing House) (in Chinese) [黄均 1988 非晶态固体物理学(北京:北京大学出版社)]
[13] Sheng Z, Xie S Q, Pan C Y 1989 Probability Theory and Mathematical Statistics (Beijing: China Higher Education Press) (in Chinese) [盛骤, 谢式千, 潘承毅 1989 概率论与数理统计(北京:高等教育出版社)]
[14] Doron K, Hagit M 1990 IEEE Trans. Acoust. Speech Signal Proc. 38 901
[15] Doan J C, Bravman J C, Flinn P A, Marieb T N 1998 Mater. Res. Soc. Sym. Proc. 516 83
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