Differential capacitance is derived based upon energy, charge or current considerations, and determined when it may go negative or positive. These alternative views of differential capacitances are analyzed, and the relationships between them are shown. Because of recent interest in obtaining negative capacitance for reducing the subthreshold voltage swing in field effect type of devices, using ferroelectric materials characterized by permittivity, these concepts are now of paramount interest to the research community. For completeness, differential capacitance is related to the static capacitance, and conditions when the differential capacitance may go negative in relation to the static capacitance are shown
© 2022 Wiley-VCH GmbHThe phenomenological Landau–Ginzburg–Devonshire model provides a fundamental ba...
Thin-film ferroelectric capacitance can be obtained by 2 different methods. Capacitance obtained usi...
The important direction in Low Power research is associated with the usage of ferroelectric material...
In this paper, it is shown that for stable, steady state operation of devices typical of microwave a...
We demonstrate that a ferroelectric can cause a differential amplification without needing such an e...
We demonstrate that a ferroelectric can cause a differential amplification without needing such an e...
In this paper, we revisit the theory of negative capacitance in: 1) a standalone ferroelectric; 2) a...
In this paper, we revisit the theory of negative capacitance in: 1) a standalone ferroelectric; 2) a...
The negative capacitance (NC) operation of ferroelectric materials has been originally proposed base...
We present a revised analysis of Negative Capacitance (NC) in ferroelectric-insulator capacitors, an...
Because of the thermal distribution of electrons in a semiconductor, modern transistors cannot be tu...
Boltzmann electron energy distribution poses a fundamental limit to lowering the energy dissipation ...
Owing to the fundamental physics of the Boltzmann distribution, the ever-increasing power dissipatio...
In this paper, we report the basic design conditions and the experimental confirmation of a temperat...
The Landau theory of phase transitions predicts the presence of a negative capacitance in ferroelect...
© 2022 Wiley-VCH GmbHThe phenomenological Landau–Ginzburg–Devonshire model provides a fundamental ba...
Thin-film ferroelectric capacitance can be obtained by 2 different methods. Capacitance obtained usi...
The important direction in Low Power research is associated with the usage of ferroelectric material...
In this paper, it is shown that for stable, steady state operation of devices typical of microwave a...
We demonstrate that a ferroelectric can cause a differential amplification without needing such an e...
We demonstrate that a ferroelectric can cause a differential amplification without needing such an e...
In this paper, we revisit the theory of negative capacitance in: 1) a standalone ferroelectric; 2) a...
In this paper, we revisit the theory of negative capacitance in: 1) a standalone ferroelectric; 2) a...
The negative capacitance (NC) operation of ferroelectric materials has been originally proposed base...
We present a revised analysis of Negative Capacitance (NC) in ferroelectric-insulator capacitors, an...
Because of the thermal distribution of electrons in a semiconductor, modern transistors cannot be tu...
Boltzmann electron energy distribution poses a fundamental limit to lowering the energy dissipation ...
Owing to the fundamental physics of the Boltzmann distribution, the ever-increasing power dissipatio...
In this paper, we report the basic design conditions and the experimental confirmation of a temperat...
The Landau theory of phase transitions predicts the presence of a negative capacitance in ferroelect...
© 2022 Wiley-VCH GmbHThe phenomenological Landau–Ginzburg–Devonshire model provides a fundamental ba...
Thin-film ferroelectric capacitance can be obtained by 2 different methods. Capacitance obtained usi...
The important direction in Low Power research is associated with the usage of ferroelectric material...