Ferroelektrik faz geçişinde iki alt örgü, Dvorak ve Levanyuk-Sannikov modelleri ile modifikasyonları

dc.contributor.advisorYurtseven, Hamit
dc.contributor.authorTokluoğlu, Metin
dc.contributor.authorID55591
dc.contributor.departmentFizik Mühendisliği
dc.date.accessioned2023-03-16T05:51:28Z
dc.date.available2023-03-16T05:51:28Z
dc.date.issued1996
dc.descriptionTez (Yüksek Lisans) -- İstanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü, 1996
dc.description.abstractT(K> Ps 62.5 65 67.5 70 72.5 75 (a) T(K) (b) Fig 5.Temperature dependence of Vs. a) The dots show the experimental data of HDDBACEEC crystal. The solid line is calculated from fitting of Eq(20) to the experimental data of HDDBACEEC [13] crystal, b) The dots show the experimental data of triglycine selenate [14] crystals. The solid line is calculated from fitting Eq(20) the experimental data of triglycine selenate crystal. g{P(tc)mtc)j:)=v(W'c) We then find that Tc = T0+(k + 3B2 /]6C)/ A Next define Td as the temperature at which the radical of Eq(17) vanishes Td = T0+(k + 3B2 1 AC) I A Then, the ferroelectric phase susceptibility becomes 2C X = 1 B2\\ + -[(T-Td)l(Tc-ldf^-ld)l(Tc-Td)Y where T Tc> T0 the phase transition prevents either phase from having a divergence. 5. Modification of The Levanyuk-Sannikov Model Now we consider the addition of the aP2îj2 + - if term in thermodynamic potential which is suggested by Levanyuk and Sannikov as given below: G = A(T-T0)P2 /2 + BP4 /4 + CP6 /6 + brj4 / 4-qVrj2 + a?2r/2 +-rj2 (18) Minimization of termodynamics potential Eq(18) with respect to jj and P gives that Tj2=-(2qP-2aP2-e) (19),2\.2 V b J b b p b b We fit Eq(20) to the experimental data of HDDBACEEC [13] crystal and triglycine selenate [14]. T(K> Ps 62.5 65 67.5 70 72.5 75 (a) T(K) (b) Fig 5.Temperature dependence of Vs. a) The dots show the experimental data of HDDBACEEC crystal. The solid line is calculated from fitting of Eq(20) to the experimental data of HDDBACEEC [13] crystal, b) The dots show the experimental data of triglycine selenate [14] crystals. The solid line is calculated from fitting Eq(20) the experimental data of triglycine selenate crystal. g{P(tc)mtc)j:)=v(W'c) We then find that Tc = T0+(k + 3B2 /]6C)/ A Next define Td as the temperature at which the radical of Eq(17) vanishes Td = T0+(k + 3B2 1 AC) I A Then, the ferroelectric phase susceptibility becomes 2C X = 1 B2\\ + -[(T-Td)l(Tc-ldf^-ld)l(Tc-Td)Y where T Tc> T0 the phase transition prevents either phase from having a divergence. 5. Modification of The Levanyuk-Sannikov Model Now we consider the addition of the aP2îj2 + - if term in thermodynamic potential which is suggested by Levanyuk and Sannikov as given below: G = A(T-T0)P2 /2 + BP4 /4 + CP6 /6 + brj4 / 4-qVrj2 + a?2r/2 +-rj2 (18) Minimization of termodynamics potential Eq(18) with respect to jj and P gives that Tj2=-(2qP-2aP2-e) (19),2\.2 V b J b b p b b We fit Eq(20) to the experimental data of HDDBACEEC [13] crystal and triglycine selenate [14]. T(K> Ps 62.5 65 67.5 70 72.5 75 (a) T(K) (b) Fig 5.Temperature dependence of Vs. a) The dots show the experimental data of HDDBACEEC crystal. The solid line is calculated from fitting of Eq(20) to the experimental data of HDDBACEEC [13] crystal, b) The dots show the experimental data of triglycine selenate [14] crystals. The solid line is calculated from fitting Eq(20) the experimental data of triglycine selenate crystal. g{P(tc)mtc)j:)=v(W'c) We then find that Tc = T0+(k + 3B2 /]6C)/ A Next define Td as the temperature at which the radical of Eq(17) vanishes Td = T0+(k + 3B2 1 AC) I A Then, the ferroelectric phase susceptibility becomes 2C X = 1 B2\\ + -[(T-Td)l(Tc-ldf^-ld)l(Tc-Td)Y where T Tc> T0 the phase transition prevents either phase from having a divergence. 5. Modification of The Levanyuk-Sannikov Model Now we consider the addition of the aP2îj2 + - if term in thermodynamic potential which is suggested by Levanyuk and Sannikov as given below: G = A(T-T0)P2 /2 + BP4 /4 + CP6 /6 + brj4 / 4-qVrj2 + a?2r/2 +-rj2 (18) Minimization of termodynamics potential Eq(18) with respect to jj and P gives that Tj2=-(2qP-2aP2-e) (19),2\.2 V b J b b p b b We fit Eq(20) to the experimental data of HDDBACEEC [13] crystal and triglycine selenate [14]. T(K> Ps 62.5 65 67.5 70 72.5 75 (a) T(K) (b) Fig 5.Temperature dependence of Vs. a) The dots show the experimental data of HDDBACEEC crystal. The solid line is calculated from fitting of Eq(20) to the experimental data of HDDBACEEC [13] crystal, b) The dots show the experimental data of triglycine selenate [14] crystals. The solid line is calculated from fitting Eq(20) the experimental data of triglycine selenate crystal. g{P(tc)mtc)j:)=v(W'c) We then find that Tc = T0+(k + 3B2 /]6C)/ A Next define Td as the temperature at which the radical of Eq(17) vanishes Td = T0+(k + 3B2 1 AC) I A Then, the ferroelectric phase susceptibility becomes 2C X = 1 B2\\ + -[(T-Td)l(Tc-ldf^-ld)l(Tc-Td)Y where T Tc> T0 the phase transition prevents either phase from having a divergence. 5. Modification of The Levanyuk-Sannikov Model Now we consider the addition of the aP2îj2 + - if term in thermodynamic potential which is suggested by Levanyuk and Sannikov as given below: G = A(T-T0)P2 /2 + BP4 /4 + CP6 /6 + brj4 / 4-qVrj2 + a?2r/2 +-rj2 (18) Minimization of termodynamics potential Eq(18) with respect to jj and P gives that Tj2=-(2qP-2aP2-e) (19),2\.2 V b J b b p b b We fit Eq(20) to the experimental data of HDDBACEEC [13] crystal and triglycine selenate [14]. T(K> Ps 62.5 65 67.5 70 72.5 75 (a) T(K) (b) Fig 5.Temperature dependence of Vs. a) The dots show the experimental data of HDDBACEEC crystal. The solid line is calculated from fitting of Eq(20) to the experimental data of HDDBACEEC [13] crystal, b) The dots show the experimental data of triglycine selenate [14] crystals. The solid line is calculated from fitting Eq(20) the experimental data of triglycine selenate crystal.
dc.description.degreeYüksek Lisans
dc.identifier.urihttp://hdl.handle.net/11527/22865
dc.language.isotr
dc.publisherFen Bilimleri Enstitüsü
dc.rightsKurumsal arşive yüklenen tüm eserler telif hakkı ile korunmaktadır. Bunlar, bu kaynak üzerinden herhangi bir amaçla görüntülenebilir, ancak yazılı izin alınmadan herhangi bir biçimde yeniden oluşturulması veya dağıtılması yasaklanmıştır.
dc.rightsAll works uploaded to the institutional repository are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission.
dc.subjectFaz geçişleri
dc.subjectFerroelektrik
dc.subjectModifikasyon
dc.subjectModification
dc.subjectPhase transitions
dc.subjectFerroelectrics
dc.titleFerroelektrik faz geçişinde iki alt örgü, Dvorak ve Levanyuk-Sannikov modelleri ile modifikasyonları
dc.typeMaster Thesis

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