Giant, anomalous piezo-impedance of silicon-on-insulator
arXiv:1801.09494 · doi:10.1103/PhysRevApplied.11.044010
Abstract
A giant, anomalous piezo-response of fully-depleted silicon-on-insulator (FD-SOI) devices under mechanical stress is demonstrated using impedance spectroscopy. This piezo-response strongly depends on the measurement frequency, , and consists of both a piezoresistance (PZR) and piezocapacitance whose maximum values are Pa and Pa respectively. These values should be compared with the usual bulk PZR in p-type silicon, Pa. The observations are well described using models of space charge limited electron and hole currents in the presence of fast electronic traps having stress-dependent capture () and emission rates. Under steady-state conditions (i.e. when ) where the impedance spectroscopy measurements yield results that are directly comparable with previously published reports of PZR in depleted, silicon nano-objects, the overall piezo-response is just the usual, bulk silicon PZR. Anomalous PZR is observed only under non-steady-state conditions when , with a symmetry suggesting that the electro-mechanically active fast traps are native Pb interface defects. The observations suggest new functionalities for FD-SOI, and shed light on the debate over the PZR of carrier depleted nano-silicon.
14 pages with 10 figures including appendices