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Bibliography

Jarillo-Herrero, P., Sapmaz, S., Dekker, C., Kouwenhoven, L. P., & van der Zant, H. S. J. (2004). Electron-hole symmetry in a semiconducting carbon nanotube quantum dot. Nature, 429(6990), 389–392.

Authors 5
  1. Pablo Jarillo-Herrero (first)
  2. Sami Sapmaz (additional)
  3. Cees Dekker (additional)
  4. Leo P. Kouwenhoven (additional)
  5. Herre S. J. van der Zant (additional)
References 21 Referenced 209
  1. Ashcroft, N. W. & Mermin, N. D. Solid State Physics (Saunders College, Orlando, 1976) / Solid State Physics by NW Ashcroft (1976)
  2. Dekker, C. Carbon nanotubes as molecular quantum wires. Phys. Today 52, 22–28 (1999) (10.1063/1.882658) / Phys. Today by C Dekker (1999)
  3. Dresselhaus, M. S., Dresselhaus, G. & Eklund, P. C. Science of Fullerenes and Carbon Nanotubes (Academic, San Diego, 1996) / Science of Fullerenes and Carbon Nanotubes by MS Dresselhaus (1996)
  4. Kouwenhoven, L. P., Austing, D. G. & Tarucha, S. Few-electron quantum dots. Rep. Prog. Phys. 64, 701–736 (2001) (10.1088/0034-4885/64/6/201) / Rep. Prog. Phys. by LP Kouwenhoven (2001)
  5. Tans, S. J. et al. Individual single-wall nanotubes as quantum wires. Nature 386, 474–477 (1997) (10.1038/386474a0) / Nature by SJ Tans (1997)
  6. Bockrath, M. et al. Single-electron transport in ropes of carbon nanotubes. Science 275, 1922–1925 (1997) (10.1126/science.275.5308.1922) / Science by M Bockrath (1997)
  7. Cobden, D. H. & Nygård, J. Shell filling in closed single-wall carbon nanotube quantum dots. Phys. Rev. Lett. 89, 046803 (2002) (10.1103/PhysRevLett.89.046803) / Phys. Rev. Lett. by DH Cobden (2002)
  8. Ando, T. & Nakanishi, T. Impurity scattering in carbon nanotubes—Absence of back scattering. Jpn. J. Appl. Phys. 67, 1704–1713 (1998) (10.1143/JPSJ.67.1704) / Jpn. J. Appl. Phys. by T Ando (1998)
  9. McEuen, P. L., Bockrath, M., Cobden, D. H., Yoon, Y. & Louie, S. G. Disorder, pseudospins, and backscattering in carbon nanotubes. Phys. Rev. Lett. 83, 5098–5101 (1999) (10.1103/PhysRevLett.83.5098) / Phys. Rev. Lett. by PL McEuen (1999)
  10. Bronikowski, M. J., Willis, P. A., Colbert, D. T., Smith, K. A. & Smalley, R. E. Gas-phase production of carbon single-walled nanotubes from carbon monoxide via the HiPco process: A parametric study. J. Vacuum Sci. Technol. A 19, 1800–1805 (2001) (10.1116/1.1380721) / J. Vacuum Sci. Technol. A by MJ Bronikowski (2001)
  11. Fuhrer, M. S. et al. Crossed nanotube junctions. Science 288, 494–497 (2000) (10.1126/science.288.5465.494) / Science by MS Fuhrer (2000)
  12. Nygård, J. & Cobden, D. H. Quantum dots in suspended single-wall carbon nanotubes. Appl. Phys. Lett. 79, 4216–4218 (2001) (10.1063/1.1428117) / Appl. Phys. Lett. by J Nygård (2001)
  13. Bachtold, A., Hadley, P., Nakanishi, T. & Dekker, C. Logic circuits with carbon nanotube transistors. Science 294, 1317–1320 (2001) (10.1126/science.1065824) / Science by A Bachtold (2001)
  14. Park, J. & McEuen, P. L. Formation of a p-type quantum dot at the end of an n-type carbon nanotube. Appl. Phys. Lett. 79, 1363–1365 (2001) (10.1063/1.1396318) / Appl. Phys. Lett. by J Park (2001)
  15. Postma, H. W. C., Sellmeijer, A. & Dekker, C. Manipulation and imaging of individual single-wall carbon nanotubes with an atomic force microscope. Adv. Mater. 12, 1299–1302 (2000) (10.1002/1521-4095(200009)12:17<1299::AID-ADMA1299>3.0.CO;2-O) / Adv. Mater. by HWC Postma (2000)
  16. Postma, H. W. C., Yao, Z. & Dekker, C. Electron addition and excitation spectra of individual single-wall carbon nanotubes. J. Low-Temp. Phys. 118, 495–507 (2000) (10.1023/A:1004618823190) / J. Low-Temp. Phys. by HWC Postma (2000)
  17. Heinze, S. et al. Carbon nanotubes as Schottky barrier transistors. Phys. Rev. Lett. 89, 106801 (2002) (10.1103/PhysRevLett.89.106801) / Phys. Rev. Lett. by S Heinze (2002)
  18. Grabert, H. & Devoret, M. H. Single Charge Tunneling (Plenum, New York, 1992) (10.1007/978-1-4757-2166-9) / Single Charge Tunneling by H Grabert (1992)
  19. Park, H. et al. Nano-mechanical oscillations in a single-C60 transistor. Nature 407, 57–60 (2000) (10.1038/35024031) / Nature by H Park (2000)
  20. Wigner, E. On the interaction of electrons in metals. Phys. Rev. 46, 1002–1011 (1934) (10.1103/PhysRev.46.1002) / Phys. Rev. by E Wigner (1934)
  21. Häusler, W. & Kramer, B. Interacting electrons in a one-dimensional quantum dot. Phys. Rev. B 47, 16353–16357 (1993) (10.1103/PhysRevB.47.16353) / Phys. Rev. B by W Häusler (1993)
Dates
Type When
Created 21 years, 2 months ago (May 26, 2004, 5:02 p.m.)
Deposited 2 years, 3 months ago (May 18, 2023, 2:23 p.m.)
Indexed 3 weeks, 1 day ago (Aug. 2, 2025, 12:46 a.m.)
Issued 21 years, 3 months ago (May 1, 2004)
Published 21 years, 3 months ago (May 1, 2004)
Published Print 21 years, 3 months ago (May 1, 2004)
Funders 0

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@article{Jarillo_Herrero_2004, title={Electron-hole symmetry in a semiconducting carbon nanotube quantum dot}, volume={429}, ISSN={1476-4687}, url={http://dx.doi.org/10.1038/nature02568}, DOI={10.1038/nature02568}, number={6990}, journal={Nature}, publisher={Springer Science and Business Media LLC}, author={Jarillo-Herrero, Pablo and Sapmaz, Sami and Dekker, Cees and Kouwenhoven, Leo P. and van der Zant, Herre S. J.}, year={2004}, month=may, pages={389–392} }