Boundary Value Solution for Viscous Liquid Flow in Carbon Nanotubes – Application to Spin-Polarized Current Enhancement
DOI:
https://doi.org/10.15407/ujpe71.2.184Keywords:
nanofluidics, boundary-value problem, spin polarization, carbon nanotubeAbstract
Spin Polarization in Carbon Nanotubes (CNTs) is an advanced topic at the intersection of nanotechnology, quantum physics, and spintronics. It refers to the imbalance in the population of spin-up and spin-down electrons in a system. In spintronic devices, this property is used to encode information using electron spin, instead of or in addition to charge. CNTs are ideal for spintronics: because of low spin-orbit coupling (spin states persist longer), weak hyperfine interactions (especially in 12C, which has no nuclear spin), ballistic transport of electrons travelling long distances without scattering and quantum coherence supporting via quantum states. Carbon nanotubes are cylindrical structures made of rolled-up graphene sheets, and are excellent one-dimensional conductors. The presented theoretical model includes an estimation of effectiveness of carbon nanotubes in accelerating the spin-polarized current as well as a boundary value problem for the flow velocity of a fluid. This approach has been stated considering main peculiarities of the problem, in particular, taking into account Debye electric double layer and external friction (friction between the viscous fluid and the nanotube wall). Solution of assigned boundary problem has been determined in the form of an infinite series.
References
1. S.A. Wolf et al. Coherent electronic transport in ferromagnetic semiconductor heterostructures. Science 294 (5545), 1488 (2001).
2. I. ˇZuti'c, J. Fabian, S. Das Sarma. Spintronics: Fundamentals and applications. Rev. Mod. Phys. 76 (2), 323 (2004).
https://doi.org/10.1103/RevModPhys.76.323
3. K. Tsukagoshi, B.W. Alphenaar, H. Ago. Coherent transport of electron spin in a ferromagnetically contacted carbon nanotube. Nature 401 (6753), 572 (1999).
4. P. Kervalishvili, A. Lagutin. Nanostructured materials for spintronic devices. Microelectron J. 39 (10), 1060 (2008).
https://doi.org/10.1016/j.mejo.2007.08.001
5. S. Sahoo et al. Electric field control of spin transport. Nat. Phys. 4 (8), 656 (2008).
6. N. Nair et al. Spin-orbit coupling in two-dimensional semiconductors and heterostructures. J. Phys. Condens. Matter. 30 (40), 403001 (2018).
7. A. Cottet et al. Nanodevices for spin manipulation. Semicond. Sci. Technol. 21 (6), S78 (2006).
https://doi.org/10.1088/0268-1242/21/11/S11
8. L. Bocquet, E. Charlaix. Nanofluidics, from bulk to interfaces. Chem. Soc. Rev. 39 (3), 1073 (2010).
https://doi.org/10.1039/B909366B
9. R.B. Schoch, J. Han, P. Renaud. Transport phenomena in nanofluidics. Rev. Mod. Phys. 80 (3), 839 (2008).
https://doi.org/10.1103/RevModPhys.80.839
10. T. Berberashvili, V. Gogichaishvili, P. Kervalishvili. In: Proceedings of the international conference on nanotechnology 2024. Tbilisi, 2024.
11. T. Myint-U, L. Debnath. Linear partial differential equations for scientists and engineers, 4th ed. (Birkh¨auser, 2007).
Downloads
Published
Issue
Section
License
Copyright Agreement
License to Publish the Paper
Kyiv, Ukraine
The corresponding author and the co-authors (hereon referred to as the Author(s)) of the paper being submitted to the Ukrainian Journal of Physics (hereon referred to as the Paper) from one side and the Bogolyubov Institute for Theoretical Physics, National Academy of Sciences of Ukraine, represented by its Director (hereon referred to as the Publisher) from the other side have come to the following Agreement:
1. Subject of the Agreement.
The Author(s) grant(s) the Publisher the free non-exclusive right to use the Paper (of scientific, technical, or any other content) according to the terms and conditions defined by this Agreement.
2. The ways of using the Paper.
2.1. The Author(s) grant(s) the Publisher the right to use the Paper as follows.
2.1.1. To publish the Paper in the Ukrainian Journal of Physics (hereon referred to as the Journal) in original language and translated into English (the copy of the Paper approved by the Author(s) and the Publisher and accepted for publication is a constitutive part of this License Agreement).
2.1.2. To edit, adapt, and correct the Paper by approval of the Author(s).
2.1.3. To translate the Paper in the case when the Paper is written in a language different from that adopted in the Journal.
2.2. If the Author(s) has(ve) an intent to use the Paper in any other way, e.g., to publish the translated version of the Paper (except for the case defined by Section 2.1.3 of this Agreement), to post the full Paper or any its part on the web, to publish the Paper in any other editions, to include the Paper or any its part in other collections, anthologies, encyclopaedias, etc., the Author(s) should get a written permission from the Publisher.
3. License territory.
The Author(s) grant(s) the Publisher the right to use the Paper as regulated by sections 2.1.1–2.1.3 of this Agreement on the territory of Ukraine and to distribute the Paper as indispensable part of the Journal on the territory of Ukraine and other countries by means of subscription, sales, and free transfer to a third party.
4. Duration.
4.1. This Agreement is valid starting from the date of signature and acts for the entire period of the existence of the Journal.
5. Loyalty.
5.1. The Author(s) warrant(s) the Publisher that:
– he/she is the true author (co-author) of the Paper;
– copyright on the Paper was not transferred to any other party;
– the Paper has never been published before and will not be published in any other media before it is published by the Publisher (see also section 2.2);
– the Author(s) do(es) not violate any intellectual property right of other parties. If the Paper includes some materials of other parties, except for citations whose length is regulated by the scientific, informational, or critical character of the Paper, the use of such materials is in compliance with the regulations of the international law and the law of Ukraine.
6. Requisites and signatures of the Parties.
Publisher: Bogolyubov Institute for Theoretical Physics, National Academy of Sciences of Ukraine.
Address: Ukraine, Kyiv, Metrolohichna Str. 14-b.
Author: Electronic signature on behalf and with endorsement of all co-authors.










