388
20 Wonders of Multifield Lattice Oscillation
14. J. Linder, T. Yokoyama, A. Sudbø, Anomalous finite size effects on surface states in the
topological insulator Bi 2 Se 3 . Phys. Rev. B 80(20), 205401–205406 (2009)
15. B.F. Variano, N.E. Schlotter, D.M. Hwang, C.J. Sandroff, Investigation of finite size effects in
a first order phase transition: high pressure Raman study of CdS microcrystallites. J. Chem.
Phys. 88(4), 2848–2851 (1988)
16. Y. Wang, N. Herron, Quantum size effects on the exciton energy of CdS clusters. Phys. Rev.
B 42(11), 7253–7255 (1990)
17. A.W. Schill, M.A. El-Sayed, Wavelength-dependent hot electron relaxation in PVP capped
CdS/HgS/CdS quantum dot quantum well nanocrystals. J. Phys. Chem. B 108(36), 13619–
13625 (2004)
18. H. Borchert, D. Dorfs, C. McGinley, S. Adam, T. Möller, H. Weller, A. Eychmüller, Photoemission study of onion like quantum dot quantum well and double quantum well nanocrystals
of CdS and HgS. J. Phys. Chem. B 107(30), 7486–7491 (2003)
19. J. Zhang, Z. Peng, A. Soni, Y. Zhao, Y. Xiong, B. Peng, J. Wang, M.S. Dresselhaus, Q. Xiong,
Raman spectroscopy of few-quintuple layer topological insulator Bi 2 Se 3 nanoplatelets. Nano
Lett. 11(6), 2407–2414 (2011)
20. A.K. Gupta, T.J. Russin, H.R. Gutierrez, P.C. Eklund, Probing graphene edges via Raman
scattering. ACS Nano 3(1), 45–52 (2008)
21. D. Graf, F. Molitor, K. Ensslin, C. Stampfer, A. Jungen, C. Hierold, L. Wirtz, Spatially resolved
raman spectroscopy of single- and few-layer graphene. Nano Lett. 7(2), 238–242 (2007)
22. D.S. Chuu, C.M. Dai, Quantum size effects in CdS thin films. Phys. Rev. B 45(20), 11805–
11810 (1992)
23. A. Tanaka, S. Onari, T. Arai, Raman-scattering from CdSe microcrystals embedded in a
germanate glass matrix. Phys. Rev. B 45(12), 6587–6592 (1992)
24. O. Auciello, J.F. Scott, R. Ramesh, The physics of ferroelectric memories. Phys. Today 51,
22 (1998)
25. J. Liu, Y.K. Vohra, Raman modes of 6H polytype of silicon carbide to ultrahigh pressures: a
comparison with silicon and diamond. Phys. Rev. Lett. 72(26), 4105–4108 (1994)
26. Z.W. Chen, C.Q. Sun, Y.C. Zhou, O.Y. Gang, Size dependence of the pressure-induced phase
transition in nanocrystals. J. Phys. Chem. C 112(7), 2423–2427 (2008)
27. J. Zhu, J.X. Yu, Y.J. Wang, X.R. Chen, F.Q. Jing, First-principles calculations for elastic
properties of rutile TiO 2 under pressure. Chin. Phys. B 17(6), 2216 (2008)
28. N. Iles, A. Kellou, K.D. Khodja, B. Amrani, F. Lemoigno, D. Bourbie, H. Aourag, Atomistic
study of structural, elastic, electronic and thermal properties of perovskites Ba(Ti, Zr, Nb)O-3.
Comput. Mater. Sci. 39(4), 896–902 (2007)
29. B.B. Karki, L. Stixrude, S.J. Clark, M.C. Warren, G.J. Ackland, J. Crain, Structure and
elasticity of MgO at high pressure. Am. Mineral. 82, 51–60 (1997)
30. A. Bouhemadou, K. Haddadi, Structural, elastic, electronic and thermal properties of the cubic
perovskite-type BaSnO 3 . Solid State Sci. 12, 630–636 (2010)
31. L.K. Pan, C.Q. Sun, T.P. Chen, S. Li, C.M. Li, B.K. Tay, Dielectric suppression of nanosolid
silicon. Nanotechnology 15(12), 1802–1806 (2004)
32. X.J. Liu, Z.F. Zhou, L.W. Yang, J.W. Li, G.F. Xie, S.Y. Fu, C.Q. Sun, Correlation and size
dependence of the lattice strain, binding energy, elastic modulus, and thermal stability for Au
and Ag nanostructures. J. Appl. Phys. 109(7), 074319 (2011)
33. X.J. Liu, L.W. Yang, Z.F. Zhou, P.K. Chu, C.Q. Sun, Inverse Hall-Petch relationship of nanostructured TiO 2 : skin-depth energy pinning versus surface preferential melting. J. Appl. Phys.
108, 073503 (2010)
34. L.K. Pan, C.Q. Sun, C.M. Li, Elucidating Si-Si dimmer vibration from the size-dependent
Raman shift of nanosolid Si. J. Phys. Chem. B 108(11), 3404–3406 (2004)
35. J. Zi, H. Büscher, C. Falter, W. Ludwig, K. Zhang, X. Xie, Raman shifts in Si nanocrystals.
Appl. Phys. Lett. 69(2), 200–202 (1996)
36. X.X. Yang, J.W. Li, Z.F. Zhou, Y. Wang, L.W. Yang, W.T. Zheng, C.Q. Sun, Raman spectroscopic determination of the length, strength, compressibility, Debye temperature, elasticity,
and force constant of the C–C bond in graphene. Nanoscale 4(2), 502–510 (2012)
20 Wonders of Multifield Lattice Oscillation
14. J. Linder, T. Yokoyama, A. Sudbø, Anomalous finite size effects on surface states in the
topological insulator Bi 2 Se 3 . Phys. Rev. B 80(20), 205401–205406 (2009)
15. B.F. Variano, N.E. Schlotter, D.M. Hwang, C.J. Sandroff, Investigation of finite size effects in
a first order phase transition: high pressure Raman study of CdS microcrystallites. J. Chem.
Phys. 88(4), 2848–2851 (1988)
16. Y. Wang, N. Herron, Quantum size effects on the exciton energy of CdS clusters. Phys. Rev.
B 42(11), 7253–7255 (1990)
17. A.W. Schill, M.A. El-Sayed, Wavelength-dependent hot electron relaxation in PVP capped
CdS/HgS/CdS quantum dot quantum well nanocrystals. J. Phys. Chem. B 108(36), 13619–
13625 (2004)
18. H. Borchert, D. Dorfs, C. McGinley, S. Adam, T. Möller, H. Weller, A. Eychmüller, Photoemission study of onion like quantum dot quantum well and double quantum well nanocrystals
of CdS and HgS. J. Phys. Chem. B 107(30), 7486–7491 (2003)
19. J. Zhang, Z. Peng, A. Soni, Y. Zhao, Y. Xiong, B. Peng, J. Wang, M.S. Dresselhaus, Q. Xiong,
Raman spectroscopy of few-quintuple layer topological insulator Bi 2 Se 3 nanoplatelets. Nano
Lett. 11(6), 2407–2414 (2011)
20. A.K. Gupta, T.J. Russin, H.R. Gutierrez, P.C. Eklund, Probing graphene edges via Raman
scattering. ACS Nano 3(1), 45–52 (2008)
21. D. Graf, F. Molitor, K. Ensslin, C. Stampfer, A. Jungen, C. Hierold, L. Wirtz, Spatially resolved
raman spectroscopy of single- and few-layer graphene. Nano Lett. 7(2), 238–242 (2007)
22. D.S. Chuu, C.M. Dai, Quantum size effects in CdS thin films. Phys. Rev. B 45(20), 11805–
11810 (1992)
23. A. Tanaka, S. Onari, T. Arai, Raman-scattering from CdSe microcrystals embedded in a
germanate glass matrix. Phys. Rev. B 45(12), 6587–6592 (1992)
24. O. Auciello, J.F. Scott, R. Ramesh, The physics of ferroelectric memories. Phys. Today 51,
22 (1998)
25. J. Liu, Y.K. Vohra, Raman modes of 6H polytype of silicon carbide to ultrahigh pressures: a
comparison with silicon and diamond. Phys. Rev. Lett. 72(26), 4105–4108 (1994)
26. Z.W. Chen, C.Q. Sun, Y.C. Zhou, O.Y. Gang, Size dependence of the pressure-induced phase
transition in nanocrystals. J. Phys. Chem. C 112(7), 2423–2427 (2008)
27. J. Zhu, J.X. Yu, Y.J. Wang, X.R. Chen, F.Q. Jing, First-principles calculations for elastic
properties of rutile TiO 2 under pressure. Chin. Phys. B 17(6), 2216 (2008)
28. N. Iles, A. Kellou, K.D. Khodja, B. Amrani, F. Lemoigno, D. Bourbie, H. Aourag, Atomistic
study of structural, elastic, electronic and thermal properties of perovskites Ba(Ti, Zr, Nb)O-3.
Comput. Mater. Sci. 39(4), 896–902 (2007)
29. B.B. Karki, L. Stixrude, S.J. Clark, M.C. Warren, G.J. Ackland, J. Crain, Structure and
elasticity of MgO at high pressure. Am. Mineral. 82, 51–60 (1997)
30. A. Bouhemadou, K. Haddadi, Structural, elastic, electronic and thermal properties of the cubic
perovskite-type BaSnO 3 . Solid State Sci. 12, 630–636 (2010)
31. L.K. Pan, C.Q. Sun, T.P. Chen, S. Li, C.M. Li, B.K. Tay, Dielectric suppression of nanosolid
silicon. Nanotechnology 15(12), 1802–1806 (2004)
32. X.J. Liu, Z.F. Zhou, L.W. Yang, J.W. Li, G.F. Xie, S.Y. Fu, C.Q. Sun, Correlation and size
dependence of the lattice strain, binding energy, elastic modulus, and thermal stability for Au
and Ag nanostructures. J. Appl. Phys. 109(7), 074319 (2011)
33. X.J. Liu, L.W. Yang, Z.F. Zhou, P.K. Chu, C.Q. Sun, Inverse Hall-Petch relationship of nanostructured TiO 2 : skin-depth energy pinning versus surface preferential melting. J. Appl. Phys.
108, 073503 (2010)
34. L.K. Pan, C.Q. Sun, C.M. Li, Elucidating Si-Si dimmer vibration from the size-dependent
Raman shift of nanosolid Si. J. Phys. Chem. B 108(11), 3404–3406 (2004)
35. J. Zi, H. Büscher, C. Falter, W. Ludwig, K. Zhang, X. Xie, Raman shifts in Si nanocrystals.
Appl. Phys. Lett. 69(2), 200–202 (1996)
36. X.X. Yang, J.W. Li, Z.F. Zhou, Y. Wang, L.W. Yang, W.T. Zheng, C.Q. Sun, Raman spectroscopic determination of the length, strength, compressibility, Debye temperature, elasticity,
and force constant of the C–C bond in graphene. Nanoscale 4(2), 502–510 (2012)
