132
R. Paul et al.
Fig. 46 The curves have been drawn at terahertz frequency for the normalized Fermi energy versus
x for Kane model which contains three energy band constants for all the cases of Fig. 2
References
1. K.P. Ghatak, M. Mitra, Electronic Properties, Series in Nanomaterials, Vol. 1 (De Guyter,
Germany, 2020)
2. K.P. Ghatak, M. Mitra, Quantization and Entropy, Series in Nanomaterials, Vol. 2 (De Guyter,
Germany, 2020)
3. K.P. Ghatak, Quantum Wires: An Overview, Series in Nanotechnology Science and Technology
(Nova, USA, 2020)
4. K.P Ghatak, S. Bhattacharya, D De, Einstein Relation in Compound Semiconductors and
their Heterostructures, Springer Series in Materials Science, Vol. 116, (Springer, Heidelberg,
2009)
5. K.P Ghatak, D De, S. Bhattacharya, Photoemission from Optoelectronic Materials and
Their Nanostructures, Springer Series in Nanostructure Science and Technology (Springer,
Heidelberg, 2009)
6. K.P. Ghatak, S Bhattacharya, Thermo Electric Power In Nano structured Materials Strong
Magnetic Fields Springer Series in Materials Science, Vol. 137, (Springer, Heidelberg, 2010)
7. S. Bhattacharya, K.P. Ghatak, Fowler-Nordheim Field Emission: Effects in Semiconductor
Nanostructures, Springer Series in Solid state Sciences, Vol. 170, (Springer, Heidelberg,
2012)
8. S. Bhattacharya, K.P. Ghatak, Effective Electron Mass in Low Dimensional Semiconductors,
Springer Series in Materials Sciences, Vol. 167 (Springer, Heidelberg, 2013)
9. K.P. Ghatak, S Bhattacharya, Debye Screening Length: Effects of Nanostructured Materials,
Springer Tracts in Modern Physics, Vol. 255 (Springer, Heidelberg, 2014)
10. K.P. Ghatak, S Bhattacharya, Heavily Doped 2D Quantized Structures and the Einstein
Relation, Springer Tracts in Modern Physics, Vol. 260 (Springer, Heidelberg, 2015)
11. K.P. Ghatak, Einstein’s Photo-emission: Emission from Heavily Doped Quantized Structures,
Springer Tracts in Modern Physics, Vol. 262 (Springer, Heidelberg, 2015)
12. K.P. Ghatak, Dispersion Relations in Heavily–Doped Nanostructures, Springer Tracts in
Modern Physics, Vol. 265 (Springer, Heidelberg, 2016)
13. K.P. Ghatak, Magneto Thermoelectric Power in Heavily Doped Quantized Structures, Series
on the Foundations of Natural Science and Technology, Vol. 7 (World Scientific, 2016)
14. K.P. Ghatak, Quantum Effects, Heavy Doping, and The Effective Mass, Series on the
Foundations of Natural Science and Technology, Vol. 8, (World Scientific, 2017)
R. Paul et al.
Fig. 46 The curves have been drawn at terahertz frequency for the normalized Fermi energy versus
x for Kane model which contains three energy band constants for all the cases of Fig. 2
References
1. K.P. Ghatak, M. Mitra, Electronic Properties, Series in Nanomaterials, Vol. 1 (De Guyter,
Germany, 2020)
2. K.P. Ghatak, M. Mitra, Quantization and Entropy, Series in Nanomaterials, Vol. 2 (De Guyter,
Germany, 2020)
3. K.P. Ghatak, Quantum Wires: An Overview, Series in Nanotechnology Science and Technology
(Nova, USA, 2020)
4. K.P Ghatak, S. Bhattacharya, D De, Einstein Relation in Compound Semiconductors and
their Heterostructures, Springer Series in Materials Science, Vol. 116, (Springer, Heidelberg,
2009)
5. K.P Ghatak, D De, S. Bhattacharya, Photoemission from Optoelectronic Materials and
Their Nanostructures, Springer Series in Nanostructure Science and Technology (Springer,
Heidelberg, 2009)
6. K.P. Ghatak, S Bhattacharya, Thermo Electric Power In Nano structured Materials Strong
Magnetic Fields Springer Series in Materials Science, Vol. 137, (Springer, Heidelberg, 2010)
7. S. Bhattacharya, K.P. Ghatak, Fowler-Nordheim Field Emission: Effects in Semiconductor
Nanostructures, Springer Series in Solid state Sciences, Vol. 170, (Springer, Heidelberg,
2012)
8. S. Bhattacharya, K.P. Ghatak, Effective Electron Mass in Low Dimensional Semiconductors,
Springer Series in Materials Sciences, Vol. 167 (Springer, Heidelberg, 2013)
9. K.P. Ghatak, S Bhattacharya, Debye Screening Length: Effects of Nanostructured Materials,
Springer Tracts in Modern Physics, Vol. 255 (Springer, Heidelberg, 2014)
10. K.P. Ghatak, S Bhattacharya, Heavily Doped 2D Quantized Structures and the Einstein
Relation, Springer Tracts in Modern Physics, Vol. 260 (Springer, Heidelberg, 2015)
11. K.P. Ghatak, Einstein’s Photo-emission: Emission from Heavily Doped Quantized Structures,
Springer Tracts in Modern Physics, Vol. 262 (Springer, Heidelberg, 2015)
12. K.P. Ghatak, Dispersion Relations in Heavily–Doped Nanostructures, Springer Tracts in
Modern Physics, Vol. 265 (Springer, Heidelberg, 2016)
13. K.P. Ghatak, Magneto Thermoelectric Power in Heavily Doped Quantized Structures, Series
on the Foundations of Natural Science and Technology, Vol. 7 (World Scientific, 2016)
14. K.P. Ghatak, Quantum Effects, Heavy Doping, and The Effective Mass, Series on the
Foundations of Natural Science and Technology, Vol. 8, (World Scientific, 2017)
