Fabrication process development for superconducting VLSI circuits: minimizing plasma charging damage
作者:Sergey K. Tolpygo, Denis Amparo · 发表于:Journal of Physics Conference Series · 年份:2008 · DOI:10.1088/1742-6596/97/1/012227 · 被引用次数:8 · 研究领域:Physics of Superconductivity and Magnetism、Silicon Carbide Semiconductor Technologies、Semiconductor materials and devices
In order to realize the potential of superconducting digital integrated circuits and make them competitive with semiconductor ICs, their integration scale must be increased from a current level of ~ 10 4 Josephson junctions (JJs) per chip to a VLSI level, and the maximum clock frequency, currently ~ 30 GHz, must also be increased above 50 GHz. It is shown that the main factor preventing successful fabrication of VLSI superconducting digital circuits is variations of the Josephson critical currents in logic cells caused by plasma-induced charging damage (electric stress) to the ultra thin oxide tunnel barrier of JJs. The results are presented for Nb/Al/AlO x /Nb tunnel junctions fabricated on 150-mm wafers by an 11-level process for superconducting integrated circuits. It is shown that, as a result of charging in processing plasmas, the critical current I c of JJs becomes dependent on the way the junctions are connected to the circuit ground plane and interconnected with other circuit elements. For instance, the I c of the grounded junctions may abnormally increase with respect to the I c of the floating junctions. Depending on the processing plasma parameters, plasma charging can damage all junctions in a circuit or only some specific junctions, e.g., the smallest in size. In addition to the I c enhancement, the damage also reveals itself as increased subgap conduction in tunnel junctions and as an enhanced spread of the critical currents of the same-size junctions, a result ...