Electrical potential of PZT induced by collision energy.
Ryosuke Kondo, Tomonori OJIMA, Kazuhiro SHIGENOBU, Yoshitake Nishi
Abstract
Open-access reader
Ryosuke Kondo, Tomonori OJIMA, Kazuhiro SHIGENOBU, Yoshitake Nishi
Abstract
Open-access reader
The collision energy generates the electrical potential of PZT. As the value of the energy increases, the electrical potential becomes higher. We often find the opposite electrical potential. Thus, we investigate the electrical potential. When the residual strain is relaxed enough, we can explain that the integrated electrical potential approaches to zero. This may induce the opposite potential.
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The collision energy generates the electrical potential of PZT. As the value of the energy increases, the electrical potential becomes higher. We often find the opposite electrical potential. Thus, we investigate the electrical potential. When the residual strain is relaxed enough, we can explain that the integrated electrical potential approaches to zero. This may induce the opposite potential.
Key concepts: Electric potential energy, Collision, Potential energy, Electric potential, Residual, Energy (signal processing), Materials science, Atomic physics