From Ali Hajimiri’s Paper
\[h_{\phi}(t,\tau) = \dfrac{\Gamma(\omega_0 \tau)}{q_{max}} u(t-\tau)\] \[\mathcal{L}(\Delta \omega) = \dfrac{\dfrac{\overline{i_n^2}}{\Delta f} \Gamma_{rms}^2}{2 q_{max}^2 \Delta \omega^2}\]From Ali Hajimiri’s Paper
\[h_{\phi}(t,\tau) = \dfrac{\Gamma(\omega_0 \tau)}{q_{max}} u(t-\tau)\] \[\mathcal{L}(\Delta \omega) = \dfrac{\dfrac{\overline{i_n^2}}{\Delta f} \Gamma_{rms}^2}{2 q_{max}^2 \Delta \omega^2}\]A new version of content is available.