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High-frequency, ’quantum’ and electromechanical effects in quasi-one-dimensional charge density wave conductors

, , , , ,
Kotelnikov Institute of Radioengineering and Electronics of the Russian Academy of Sciences, ul. Mokhovaya 11, kor. 7, Moscow, 125009, Russian Federation

Recent results (some previously unpublished) on the physics of charge density waves (CDWs) are reviewed. The synthesis conditions and unique properties of the quasi-one-dimensional compound NbS3, with highly coherent room temperature CDWs, are described. A peculiar type of ’quantization’ is discussed, which is observed in micro- and nanosamples of K0,3MoO3 and NbSe3 due to the discrete nature of CDW wave vector values. The electric-field-induced torsional strain (TS) in quasi-one-dimensional conductors is considered. Research results on the TS of a noise character induced by sliding CDWs are presented, along with those on the inverse effect, the modulation of the voltage induced by externally driven TS. Results on the nonlinear conduction of TiS3, a quasi-one-dimensional compound not belonging to the family of classical Peierls conductors, are also described.

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Fulltext is also available at DOI: 10.3367/UFNe.0183.201301b.0033
PACS: 61.44.Fw, 62.25.−g, 71.45.Lr, 72.20.Fr, 73.20.Mf, 78.70.Gq (all)
DOI: 10.3367/UFNe.0183.201301b.0033
URL: https://ufn.ru/en/articles/2013/1/c/
000317578800002
2-s2.0-84876563361
2013PhyU...56...29P
Citation: Pokrovskii V Ya, Zybtsev S G, Nikitin M V, Gorlova I G, Nasretdinova V F, Zaitsev-Zotov S V "High-frequency, 'quantum' and electromechanical effects in quasi-one-dimensional charge density wave conductors" Phys. Usp. 56 29–48 (2013)
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Received: 16th, December 2011, revised: 18th, July 2012, 15th, August 2012

Оригинал: Покровский В Я, Зыбцев С Г, Никитин М В, Горлова И Г, Насретдинова В Ф, Зайцев-Зотов С В «Высокочастотные, ‘квантовые’ и электромеханические эффекты в квазиодномерных кристаллах с волной зарядовой плотности» УФН 183 33–54 (2013); DOI: 10.3367/UFNr.0183.201301b.0033

References (94) Cited by (41) ↓ Similar articles (20)

  1. Zybtsev S G, Pokrovskii V Ya, Zaitsev-Zotov S V Jetp Lett. 121 (3) 189 (2025)
  2. Vasiliev A L, Ivanova A G et al Jetp Lett. 119 (12) 942 (2024)
  3. Martovitskii V P, Nikitin M V, Pokrovskii V Ya Jetp Lett. 120 (1) 38 (2024)
  4. Chen M, Li L et al Research 6 (2023)
  5. Nikitin M V, Pokrovskii V Ya et al Jetp Lett. 118 (11) 861 (2023)
  6. Martovitskii V P, Klokov A Yu, Pokrovskii V Ya Jetp Lett. 118 (3) 195 (2023)
  7. Cheng Ch, Zhang Sh, Chern G-W Phys. Rev. B 108 (1) (2023)
  8. Barani Z, Geremew T et al Advanced Materials 35 (19) (2023)
  9. Grayfer E D, Artemkina S B et al RUSS CHEM REV 92 (3) RCR5072 (2023)
  10. Bloodgood M A, Ghafouri Ya et al Applied Physics Letters 120 (17) (2022)
  11. Balandin A A, Kargar F et al Materials Today 55 74 (2022)
  12. Nikitin M V, Zybtsev S G et al 2022 IEEE International Conference on Manipulation, Manufacturing and Measurement on the Nanoscale (3M-NANO), (2022) p. 580
  13. Nikitin M V, Zybtsev S G et al Applied Physics Letters 118 (22) (2021)
  14. Zybtsev S G, Tabachkova N Yu et al Jetp Lett. 114 (1) 40 (2021)
  15. Nikonov S A, Zybtsev S G, Pokrovskii V Ya Applied Physics Letters 118 (25) (2021)
  16. Debnath T, Debnath B, Lake R K Phys. Rev. Materials 5 (3) (2021)
  17. Orlov A P, Frolov A V et al Nanotechnology 32 (49) 49LT01 (2021)
  18. Balandin A A, Zaitsev-Zotov S V, Grüner G Applied Physics Letters 119 (17) (2021)
  19. Nikonov S A, Zybtsev S G et al Applied Physics Letters 118 (21) (2021)
  20. Conejeros S, Guster B et al Chem. Mater. 33 (14) 5449 (2021)
  21. Patra A, Rout Ch S RSC Adv. 10 (60) 36413 (2020)
  22. Zybtsev S G, Pokrovskii V Ya et al Phys. Rev. B 99 (23) (2019)
  23. Talib M, Tabassum R et al ACS Omega 4 (4) 6180 (2019)
  24. Nikitin M V, Pokrovskii V Ya et al Jetp Lett. 109 (1) 51 (2019)
  25. Abdel-Hafiez M, Thiyagarajan R et al Phys. Rev. B 99 (23) (2019)
  26. Orlov A P, Lega P V et al 2018 International Conference on Manipulation, Automation and Robotics at Small Scales (MARSS), (2018) p. 1
  27. Bloodgood M A, Wei P et al APL Materials 6 (2) (2018)
  28. Artemkina S B, Kozlova M N et al J Struct Chem 59 (4) 913 (2018)
  29. Orlov Yu S, Dudnikov V A J. Exp. Theor. Phys. 125 (5) 798 (2017)
  30. Zybtsev S G, Pokrovskii V Ya et al Phys. Rev. B 95 (3) (2017)
  31. Artemkina S B, Grayfer E D et al Spectrochimica Acta Part A: Molecular And Biomolecular Spectroscopy 179 46 (2017)
  32. Zybtsev S G, Pokrovskii V Ya et al J. Exp. Theor. Phys. 124 (4) 665 (2017)
  33. Kozlova M N, Enyashin A N, Fedorov V E J Struct Chem 57 (8) 1505 (2016)
  34. Zybtsev S G, Pokrovskii V Ya Phys. Rev. B 94 (11) (2016)
  35. Gorlova I G, Zybtsev S G et al Physica B: Condensed Matter 460 11 (2015)
  36. Island J O, Barawi M et al Advanced Materials 27 (16) 2595 (2015)
  37. Pokrovskii V Ya, Nikitin M V, Zybtsev S G Physica B: Condensed Matter 460 39 (2015)
  38. Fedorov V E, Artemkina S B et al J. Mater. Chem. C 2 (28) 5479 (2014)
  39. Artemkina S B, Podlipskaya T Yu et al Colloids And Surfaces A: Physicochemical And Engineering Aspects 461 30 (2014)
  40. Gorlova I G, Zybtsev S G, Pokrovskii V Ya Jetp Lett. 100 (4) 256 (2014)
  41. Zybtsev S G, Pokrovskii V Ya Phys. Rev. B 88 (12) (2013)

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