On the Quantum Capacitance of Quantum Wire Field-Effect …
97
Fig. 8 The normalized C g in
QWFETs made of CdGeAs 2
with 1D electron statistics as
the independent variable has
been premeditated using (a)
Eq. 3 (brown), (b) Eq. 3 with
δ = 0 (orange), (c) Eq. 5
(green), (d) Eq. 6b (red), and
(e) Eq. 7b (blue)
parameters as given in [41] using (a) Eq. 3 (brown), (b) Eq. 3 with δ = 0 (orange),
(c) Eq. 5 (red), (d) Eq. 6b (green), and (e) Eq. 7b (blue). From Fig. 7, it appears
that the normalized C g enhances in quantized step-like manner with increasing 1D
electron statistics. The normalized C g in QWFETs made of CdGeAs 2 with 1D electron statistics as the independent variable has been premeditated in Fig. 8 by taking
the different values of the energy band parameters as given in [41] using (a) Eq. 3
(brown), (b) Eq. 3 with δ = 0 (orange), (c) Eq. 5 (green), (d) Eq. 6b (red), and (e)
Eq. 7b (blue). From Fig. 8, it appears that the normalized C g in this case enhances
in quantized step-like manner with increasing 1D electron statistics. The normalized
C g in QWFETs made of InAs with 1D electron statistics as the independent variable
has been premeditated in Fig. 9 by taking the different values of the energy band
parameters as given in [41] using (a) Eq. 5 (green), (d) Eq. 6b (red), and (e) Eq. 7b
(blue). From Fig. 9, it appears that the normalized C g enhances in quantized step-like
manner with increasing 1D electron statistics. The normalized C g in QWFETs made
of InSb with 1D electron statistics as the independent variable has been premeditated
in Fig. 10 by taking the different values of the energy band parameters as given in [41]
using (a) Eq. 5 (green) (d) Eq. 6b (red), and (e) Eq. 7b (blue). From Fig. 10, it appears
that the normalized C g enhances in quantized step-like manner with increasing 1D
electron statistics.
The normalized C g in QWFETs made of Hg 1−x Cd x Te with 1D electron statistics
as the independent variable has been premeditated in Fig. 11 by taking the different
values of the energy band parameters as given in [41] using (a) Eq. 5 (green), (d)
97
Fig. 8 The normalized C g in
QWFETs made of CdGeAs 2
with 1D electron statistics as
the independent variable has
been premeditated using (a)
Eq. 3 (brown), (b) Eq. 3 with
δ = 0 (orange), (c) Eq. 5
(green), (d) Eq. 6b (red), and
(e) Eq. 7b (blue)
parameters as given in [41] using (a) Eq. 3 (brown), (b) Eq. 3 with δ = 0 (orange),
(c) Eq. 5 (red), (d) Eq. 6b (green), and (e) Eq. 7b (blue). From Fig. 7, it appears
that the normalized C g enhances in quantized step-like manner with increasing 1D
electron statistics. The normalized C g in QWFETs made of CdGeAs 2 with 1D electron statistics as the independent variable has been premeditated in Fig. 8 by taking
the different values of the energy band parameters as given in [41] using (a) Eq. 3
(brown), (b) Eq. 3 with δ = 0 (orange), (c) Eq. 5 (green), (d) Eq. 6b (red), and (e)
Eq. 7b (blue). From Fig. 8, it appears that the normalized C g in this case enhances
in quantized step-like manner with increasing 1D electron statistics. The normalized
C g in QWFETs made of InAs with 1D electron statistics as the independent variable
has been premeditated in Fig. 9 by taking the different values of the energy band
parameters as given in [41] using (a) Eq. 5 (green), (d) Eq. 6b (red), and (e) Eq. 7b
(blue). From Fig. 9, it appears that the normalized C g enhances in quantized step-like
manner with increasing 1D electron statistics. The normalized C g in QWFETs made
of InSb with 1D electron statistics as the independent variable has been premeditated
in Fig. 10 by taking the different values of the energy band parameters as given in [41]
using (a) Eq. 5 (green) (d) Eq. 6b (red), and (e) Eq. 7b (blue). From Fig. 10, it appears
that the normalized C g enhances in quantized step-like manner with increasing 1D
electron statistics.
The normalized C g in QWFETs made of Hg 1−x Cd x Te with 1D electron statistics
as the independent variable has been premeditated in Fig. 11 by taking the different
values of the energy band parameters as given in [41] using (a) Eq. 5 (green), (d)
