References
101
12. J.B. Hasted, Aqueous Dielectrics (Chapman and Hall, London, 1973)
13. A. von Hippel, The dielectric relaxation spectra of water, ice, and aqueous solutions, and their
interpretation 1. Critical survey of the status-quo for water. IEEE Tnans. Electr. Insul. 23,
801–816 (1988)
14. K. Okada, M. Yao, Y. Hiejima, H. Kohno, Y. Kajihara, Dielectric relaxation of water and
heavy water in the whole fluid phase. J. Chem. Phys. 110, 3026–3036 (1999)
15. N. Agmon, Tetrahedral displacement: the molecular mechanism behind the Debye relaxation
in water. J. Phys. Chem. 100, 1072–1080 (1996)
16. J.S. Hansen, A. Kisliuk, A.P. Sokolov, C. Gainaru, Identification of structural relaxation in
the dielectric response of water. Phys. Rev. Lett. 116, 237601–5 (2016)
17. R. Kubo, Statistical-Mechanical Theory of Irreversible Processes. I. General Theory and
Simple Applications to Magnetic and Conduction Problems. J. Phys. Soc. Jpn. 12, 570–586
(1957)
18. C. Jaccard, Thermodynamics of irreversible processes applied to ice. Phys. Kond. Mater. 3,
99–118 (1964)
19. V.G. Artemov, A.A. Volkov, A.V. Pronin, Electrical properties of water: a new insight. Biophysics 59, 520–523 (2014)
20. V.F. Petrenko, R.W. Whitworth, Physics of Ice (University Press, Oxford, 1999)
21. I. Popov, P. Ben Ishai, A. Khamzin, Yu. Feldman, The mechanism of the dielectric relaxation
in water. Phys. Chem. Chem. Phys. 18, 13941–13953 (2016)
22. E.H. Grant, Relationship between relaxation time and viscosity for water. J. Chem. Phys. 26,
1575–1577 (1957)
23. V.G. Artemov, A. Ryzhov, E. Carlsen, P. Kapralov, H. Ouerdane, Nonrotational mechanism
of polarization in alcohols. J. Phys. Chem. B 124, 11022–11029 (2020)
24. M.P. Kruger, Systematic THz dielectric spectroscopy of ionic liquids. Ph.D thesis 2010
25. A. Pimenov, P. Lunkenheimer, A. Loidl, Broadband dielectric spectroscopy on glycerol and
CKN. Ferroelectrics 176, 33–41 (1996)
26. C.G. Malmberg, A.A. Maryott, Dielectric Constant of Water from 0 to 100 C. J. Res. Nat.
Bur. Stand. 56, 2641–2649 (1956)
27. G.P. Johari, E. Whalley, The dielectric properties of ice Ih in the range 272–133 K. J. Chem.
Phys. 75, 1333–1340 (1981)
28. M. Uematsu, E.U. Franck, Static dielectric constant of water and steam. J. Phys. Chem. Ref.
Data. 9, 1291–1306 (1980)
29. E. Moore, V. Molinero, Structural transformation in supercooled water controls the crystallization rate of ice. Nature 479, 506–508 (2011)
30. H. Fröhlich, Theory of Dielectrics (Oxford University Press, Oxford, 1949)
31. A.K. Soper, The radial distribution functions of water and ice from 220 to 673 K and at
pressures up to 400 MPa. Chem. Phys. 258, 121–137 (2000)
32. J.G. Kirkwood, The local field in dielectrics. Ann. New York Acad. Sci. 40, 315–320 (1940)
33. C.J.F. Böttcher, Theory of Electric Polarization (Elsevier, New York, 1952)
34. L. Onsager, Electric moments of molecules in liquids. J. Am. Chem. Soc. 58, 1486–1493
(1936)
35. J.G. Kirkwood, The dielectric polarization of polar liquids. J. Chem. Phys. 7, 911–920 (1939)
36. S.W. Peterson, H.A. Levy, A single-crystal neutron diffraction study of heavy ice. Acta Cryst.
10, 70–76 (1957)
37. C.G. Hersberg, Infrared and Rarman Spectra (D. van Nostrand and Co., New York, 1945)
38. J.L. Aragones, L.G. MacDowell, C. Vega, Dielectric constant of ices and water: a lesson about
water interactions. J. Phys. Chem. A. 115, 5745–5758 (2011)
39. H. Gränicher, Gitterfehlordnung und physikalische Eigenschaften hexagonaler und kubischer
Eiskristalle. Z. Kristallogr. 110, 432–471 (1958)
40. C. Jaccard, Étude théorique et expérimentale des propriétés électriques de la glace. Helv.
Phys. Acta. 32, 89–128 (1959)
41. N. Bjerrum, Structure and properties of ice. Science 115, 385–390 (1952)
101
12. J.B. Hasted, Aqueous Dielectrics (Chapman and Hall, London, 1973)
13. A. von Hippel, The dielectric relaxation spectra of water, ice, and aqueous solutions, and their
interpretation 1. Critical survey of the status-quo for water. IEEE Tnans. Electr. Insul. 23,
801–816 (1988)
14. K. Okada, M. Yao, Y. Hiejima, H. Kohno, Y. Kajihara, Dielectric relaxation of water and
heavy water in the whole fluid phase. J. Chem. Phys. 110, 3026–3036 (1999)
15. N. Agmon, Tetrahedral displacement: the molecular mechanism behind the Debye relaxation
in water. J. Phys. Chem. 100, 1072–1080 (1996)
16. J.S. Hansen, A. Kisliuk, A.P. Sokolov, C. Gainaru, Identification of structural relaxation in
the dielectric response of water. Phys. Rev. Lett. 116, 237601–5 (2016)
17. R. Kubo, Statistical-Mechanical Theory of Irreversible Processes. I. General Theory and
Simple Applications to Magnetic and Conduction Problems. J. Phys. Soc. Jpn. 12, 570–586
(1957)
18. C. Jaccard, Thermodynamics of irreversible processes applied to ice. Phys. Kond. Mater. 3,
99–118 (1964)
19. V.G. Artemov, A.A. Volkov, A.V. Pronin, Electrical properties of water: a new insight. Biophysics 59, 520–523 (2014)
20. V.F. Petrenko, R.W. Whitworth, Physics of Ice (University Press, Oxford, 1999)
21. I. Popov, P. Ben Ishai, A. Khamzin, Yu. Feldman, The mechanism of the dielectric relaxation
in water. Phys. Chem. Chem. Phys. 18, 13941–13953 (2016)
22. E.H. Grant, Relationship between relaxation time and viscosity for water. J. Chem. Phys. 26,
1575–1577 (1957)
23. V.G. Artemov, A. Ryzhov, E. Carlsen, P. Kapralov, H. Ouerdane, Nonrotational mechanism
of polarization in alcohols. J. Phys. Chem. B 124, 11022–11029 (2020)
24. M.P. Kruger, Systematic THz dielectric spectroscopy of ionic liquids. Ph.D thesis 2010
25. A. Pimenov, P. Lunkenheimer, A. Loidl, Broadband dielectric spectroscopy on glycerol and
CKN. Ferroelectrics 176, 33–41 (1996)
26. C.G. Malmberg, A.A. Maryott, Dielectric Constant of Water from 0 to 100 C. J. Res. Nat.
Bur. Stand. 56, 2641–2649 (1956)
27. G.P. Johari, E. Whalley, The dielectric properties of ice Ih in the range 272–133 K. J. Chem.
Phys. 75, 1333–1340 (1981)
28. M. Uematsu, E.U. Franck, Static dielectric constant of water and steam. J. Phys. Chem. Ref.
Data. 9, 1291–1306 (1980)
29. E. Moore, V. Molinero, Structural transformation in supercooled water controls the crystallization rate of ice. Nature 479, 506–508 (2011)
30. H. Fröhlich, Theory of Dielectrics (Oxford University Press, Oxford, 1949)
31. A.K. Soper, The radial distribution functions of water and ice from 220 to 673 K and at
pressures up to 400 MPa. Chem. Phys. 258, 121–137 (2000)
32. J.G. Kirkwood, The local field in dielectrics. Ann. New York Acad. Sci. 40, 315–320 (1940)
33. C.J.F. Böttcher, Theory of Electric Polarization (Elsevier, New York, 1952)
34. L. Onsager, Electric moments of molecules in liquids. J. Am. Chem. Soc. 58, 1486–1493
(1936)
35. J.G. Kirkwood, The dielectric polarization of polar liquids. J. Chem. Phys. 7, 911–920 (1939)
36. S.W. Peterson, H.A. Levy, A single-crystal neutron diffraction study of heavy ice. Acta Cryst.
10, 70–76 (1957)
37. C.G. Hersberg, Infrared and Rarman Spectra (D. van Nostrand and Co., New York, 1945)
38. J.L. Aragones, L.G. MacDowell, C. Vega, Dielectric constant of ices and water: a lesson about
water interactions. J. Phys. Chem. A. 115, 5745–5758 (2011)
39. H. Gränicher, Gitterfehlordnung und physikalische Eigenschaften hexagonaler und kubischer
Eiskristalle. Z. Kristallogr. 110, 432–471 (1958)
40. C. Jaccard, Étude théorique et expérimentale des propriétés électriques de la glace. Helv.
Phys. Acta. 32, 89–128 (1959)
41. N. Bjerrum, Structure and properties of ice. Science 115, 385–390 (1952)
