Journal article
Applied Physics Reviews, vol. 8, 2021 May, p. 021406
APA
Click to copy
Buchs, G., Marganska, M., González, J., Eimre, K., Pignedoli, C., Passerone, D., … Bercioux, D. (2021). Metallic carbon nanotube quantum dots with broken symmetries as a platform for tunable terahertz detection. Applied Physics Reviews, 8, 021406. https://doi.org/10.1063/5.0018944
Chicago/Turabian
Click to copy
Buchs, Gilles, Magdalena Marganska, Jhon González, Kristjan Eimre, Carlo Pignedoli, Daniele Passerone, A. Ayuela, Oliver Gröning, and Dario Bercioux. “Metallic Carbon Nanotube Quantum Dots with Broken Symmetries as a Platform for Tunable Terahertz Detection.” Applied Physics Reviews 8 (May 2021): 021406.
MLA
Click to copy
Buchs, Gilles, et al. “Metallic Carbon Nanotube Quantum Dots with Broken Symmetries as a Platform for Tunable Terahertz Detection.” Applied Physics Reviews, vol. 8, May 2021, p. 021406, doi:10.1063/5.0018944.
BibTeX Click to copy
@article{buchs2021a,
title = {Metallic carbon nanotube quantum dots with broken symmetries as a platform for tunable terahertz detection},
year = {2021},
month = may,
journal = {Applied Physics Reviews},
pages = {021406},
volume = {8},
doi = {10.1063/5.0018944},
author = {Buchs, Gilles and Marganska, Magdalena and González, Jhon and Eimre, Kristjan and Pignedoli, Carlo and Passerone, Daniele and Ayuela, A. and Gröning, Oliver and Bercioux, Dario},
month_numeric = {5}
}