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	|  | Author | Verreck, D.; Verhulst, A.S.; Sorée, B.; Collaert, N.; Mocuta, A.; Thean, A.; Groeseneken, G. |    
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	|  | Title | Improved source design for p-type tunnel field-effect transistors : towards truly complementary logic | Type | A1 Journal article | 
	|  | Year  | 2014 | Publication | Applied physics letters | Abbreviated Journal | Appl Phys Lett |  | 
	|  | Volume | 105 | Issue | 24 | Pages | 243506 |  | 
	|  | Keywords | A1 Journal article; Condensed Matter Theory (CMT) |  | 
	|  | Abstract | Complementary logic based on tunnel field-effect transistors (TFETs) would drastically reduce power consumption thanks to the TFET's potential to obtain a sub-60 mV/dec subthreshold swing (SS). However, p-type TFETs typically do not meet the performance of n-TFETs for direct bandgap III-V configurations. The p-TFET SS stays well above 60 mV/dec, due to the low density of states in the conduction band. We therefore propose a source configuration in which a highly doped region is maintained only near the tunnel junction. In the remaining part of the source, the hot carriers in the exponential tail of the Fermi-Dirac distribution are blocked by reducing the doping degeneracy, either with a source section with a lower doping concentration or with a heterostructure. We apply this concept to n-p-i-p configurations consisting of In0.53Ga0.47As and an InP-InAs heterostructure. 15-band quantum mechanical simulations predict that the configurations with our source design can obtain sub-60 mV/dec SS, with an on-current comparable to the conventional source design. (C) 2014 AIP Publishing LLC. |  | 
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	|  | Publisher | American Institute of Physics | Place of Publication | New York, N.Y. | Editor |  |  | 
	|  | Language |  | Wos | 000346643600076 | Publication Date | 2014-12-17 |  | 
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	|  | ISSN | 0003-6951;1077-3118; | ISBN |  | Additional Links | UA library record; WoS full record; WoS citing articles |  | 
	|  | Impact Factor | 3.411 | Times cited | 10 | Open Access |  |  | 
	|  | Notes | ;  D. Verreck acknowledges the support of a Ph.D. stipend from the Institute for the Promotion of Innovation through Science and Technology in Flanders (IWT-Vlaanderen). This work was supported by imec's Industrial Affiliation Program.  ; | Approved | Most recent IF: 3.411; 2014 IF: 3.302 |  | 
	|  | Call Number | UA @ lucian @ c:irua:122798 | Serial | 1568 |  | 
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