RT Journal Article T1 Quantized electron transport through graphene nanoconstrictions A1 Clerico, V. A1 Delgado Notario, J. A. A1 Saiz Bretín, Marta A1 Fuentevilla, C. H. A1 Malyshev, A. V. A1 Lejarreta, Lejarreta A1 Diez, E. A1 Domínguez-Adame Acosta, Francisco AB Here, the quantization of Dirac fermions in lithographically defined grapheme nanoconstrictions is studied. Quantized conductance is observed in single nanoconstrictions fabricated on top of a thin hexamethyldisilazane layer over a Si/SiO₂ wafer. This nanofabrication method allows to obtain well defined edges in the nanoconstrictions, thus reducing the effects of edge roughness on the conductance. The occurrence of ballistic transport is proved and several size quantization plateaus are identified in the conductance at low temperature. Experimental data and numerical simulations show good agreement, demonstrating that the smoothening of the plateaus is not related to edge roughness but to quantum interference effects. PB Wiley-V C H Verlag Gmbh SN 1862-6300 YR 2018 FD 2018-09-10 LK https://hdl.handle.net/20.500.14352/12932 UL https://hdl.handle.net/20.500.14352/12932 LA eng NO ©Wiley-V C H Verlag GmbhThe authors are indebted to A. DíazFernandez and J. M. Caridad for enlightened discussions and forá critical reading of the manuscript. This research has been supported by MINECO (Grants MAT2013-46308 and MAT2016- 75955) and Junta de Castilla y Leon (Grant SA045U16). NO Ministerio de Economía y Competitividad (MINECO) NO Junta de Castilla y León DS Docta Complutense RD 2 may 2024