The Energy Gap As A Function Of The Applied Magnetic Field For

The energy gap as a function of the applied magnetic field for ...
The energy gap as a function of the applied magnetic field for ...
The energy gap as a function of the applied magnetic field for ...
The energy gap as a function of the applied magnetic field for ...
Induced TSC gap as a function of the applied magnetic field Hz, for ...
Induced TSC gap as a function of the applied magnetic field Hz, for ...
The energy as a function of the applied external magnetic field H e for ...
The energy as a function of the applied external magnetic field H e for ...
The free energy as a function of the applied magnetic field for a ...
The free energy as a function of the applied magnetic field for a ...
The free energy as a function of the applied magnetic field for a ...
The free energy as a function of the applied magnetic field for a ...
The free energy as a function of the applied magnetic field for a ...
The free energy as a function of the applied magnetic field for a ...
The free energy as a function of the applied magnetic field for a ...
The free energy as a function of the applied magnetic field for a ...
Magnonic energy gap ∆ as a function of the applied magnetic field. ∆ ...
Magnonic energy gap ∆ as a function of the applied magnetic field. ∆ ...
Figure B.1. Energy band gap ∆ as a function of the magnetic field ...
Figure B.1. Energy band gap ∆ as a function of the magnetic field ...
Scaled energy gap N as a function of the transverse magnetic field B ...
Scaled energy gap N as a function of the transverse magnetic field B ...
Energy levels as a function of the applied magnetic field in (a) the ...
Energy levels as a function of the applied magnetic field in (a) the ...
The mass gap m as a function of magnetic field B for different ...
The mass gap m as a function of magnetic field B for different ...
shows the energy levels as a function of magnetic field B for r 0 = 70 ...
shows the energy levels as a function of magnetic field B for r 0 = 70 ...
(a) Transmission as a function of the applied magnetic field for the ...
(a) Transmission as a function of the applied magnetic field for the ...
(a) The normalized energy gap E g / 0 as a function of magnetic layer ...
(a) The normalized energy gap E g / 0 as a function of magnetic layer ...
(a) The normalized energy gap E g / 0 as a function of magnetic layer ...
(a) The normalized energy gap E g / 0 as a function of magnetic layer ...
The band gap in eV as a function of the magnetic field strength M and ...
The band gap in eV as a function of the magnetic field strength M and ...
Room-temperature magnetic field coefficient of the energy gap ξ as a ...
Room-temperature magnetic field coefficient of the energy gap ξ as a ...
Energy gap as a function of the electric potential for nearest and ...
Energy gap as a function of the electric potential for nearest and ...
Magnetostatic energy density as a function of the applied magnetic ...
Magnetostatic energy density as a function of the applied magnetic ...
The energy gap of (5, 5, 3000) as a function of magnetic flux. The ...
The energy gap of (5, 5, 3000) as a function of magnetic flux. The ...
The measured magnetic field in the gap at 295 and 19 K as a function of ...
The measured magnetic field in the gap at 295 and 19 K as a function of ...
(a) The normalized energy gap E g / 0 as a function of magnetic layer ...
(a) The normalized energy gap E g / 0 as a function of magnetic layer ...
Room-temperature magnetic field coefficient of the energy gap ξ as a ...
Room-temperature magnetic field coefficient of the energy gap ξ as a ...
Room-temperature magnetic field coefficient of the energy gap ξ as a ...
Room-temperature magnetic field coefficient of the energy gap ξ as a ...
The measured magnetic field in the gap at 295 and 19 K as a function of ...
The measured magnetic field in the gap at 295 and 19 K as a function of ...
(a) The calculated energy band gap as a function of E-field for ABI ...
(a) The calculated energy band gap as a function of E-field for ABI ...
Magnetization as a function of the applied magnetic field strength ...
Magnetization as a function of the applied magnetic field strength ...
(a) Lowest energy levels and (b) energy gap as a function of the ...
(a) Lowest energy levels and (b) energy gap as a function of the ...
The dependence of the energy gap on magnetic field B for (5, 5, 3000 ...
The dependence of the energy gap on magnetic field B for (5, 5, 3000 ...
Magnetic field dependence of the high field energy gap for different ...
Magnetic field dependence of the high field energy gap for different ...
The dependence of the energy gap on magnetic field B for (5, 5, 3000 ...
The dependence of the energy gap on magnetic field B for (5, 5, 3000 ...
Estimates of the gap as a function of magnetic field. The crosses ...
Estimates of the gap as a function of magnetic field. The crosses ...
Energy (in meV), top: as function of the magnetic field, for the axial ...
Energy (in meV), top: as function of the magnetic field, for the axial ...
The energy levels as functions of magnetic field for two... | Download ...
The energy levels as functions of magnetic field for two... | Download ...

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