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Van der Wiel, W.G.1
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In carbon nanotubes, the Zeeman effect is much larger, which results in a different type of the Kondo effect with an even N (Ref. 4). This Kondo effect has been explained by M. Pustilnik et al., Phys. Rev. Lett. 84, 1756 (2000).
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15
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33744559339
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note
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2 = 0.
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16
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33744679255
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note
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This is the case of vertical quantum dots in which the tunneling processes conserve the symmetry for the motion of electrons in the transverse direction.
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18
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0542414329
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P.W. Anderson, J. Phys. C 3, 2436 (1970); P. Nozières and A. Blandin, J. Phys. (Paris) 41, 193 (1980); D.L. Cox and A. Zawadowski, Adv. Phys. 47, 599 (1998).
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J. Phys. C
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Anderson, P.W.1
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19
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0018998220
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P.W. Anderson, J. Phys. C 3, 2436 (1970); P. Nozières and A. Blandin, J. Phys. (Paris) 41, 193 (1980); D.L. Cox and A. Zawadowski, Adv. Phys. 47, 599 (1998).
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J. Phys. (Paris)
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Nozières, P.1
Blandin, A.2
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20
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0032156044
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P.W. Anderson, J. Phys. C 3, 2436 (1970); P. Nozières and A. Blandin, J. Phys. (Paris) 41, 193 (1980); D.L. Cox and A. Zawadowski, Adv. Phys. 47, 599 (1998).
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Adv. Phys.
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Cox, D.L.1
Zawadowski, A.2
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23
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33744703210
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note
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(2).
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24
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33744661365
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note
-
-.
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25
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33744685399
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note
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K(Δ) coincides with Eq. (12).
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