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SCI-SSCI or SCI Expanded Articles

  • 1. A.I. Mesea, E. Cicek , S.G. Ozkapi , B. Ozkapi and I. Erdogan, " Laser Field Effect on the Normalized Self-Polarization Self-Polarization and Binding Energy in Square Quantum Wells Made of Different Materials", Physica B 669 (2023) 415311, https://doi.org/10.1016/j.physb.2023.415311 (November 2023)
  • 2.S.G.Ozkapi, B.Ozkapi, A.I.Mese ,I.Erdogan “Effect of Si and Ge doping on electronic structure of InP nanowire”, Journal Of Optoelectronics and Advanced Materials, Vol. 25, Iss.11-12., pp. 572-579 (September 2023)
  • 3. A.I.Mese, E.Cicek, S.G.Ozkapi, B.Ozkapi, I.Erdogan(2023), Calculation of Intradonor Normalized Transition Energy in Spherical Quantum Dots Made of Different Materials, , Phys. Status Solidi B 2023, 260, 2300133, https://doi.org/10.1002/pssb.202300133 (April 2023)
  • 4. B.Ozkapi, A.I.Mese, E. Cicek and I.Erdogan, Self-polarization of hydrogenic impurity in quantum wells made of different materials, Physica Status Solidi B: Basic Solid State Physics, Vol. 259, 7, 2200059, 2022, https://doi.org/10.1002/pssb.202200059 (August 2022)
  • 5. I.Oruc, B.O.Akkoyunlu, I.Erdogan, The sources and seasonal variations of chemical components in the deposition samples in Kirklareli-Turkey, J. Serb. Chem. Soc. 2022 Volume 87, Issue 7-8, Pages: 953-967, https://doi.org/10.2298/JSC211203025O (May 2022)
  • 6. E.Cicek, A.I.Mese, B.Ozkapi, I.Erdogan, Combined effects of the hydrostatic pressure and temperature on the self-polarization in a finite quantum well under laser field, Superlattices and Microstructures 155 (2021) 106904 https://doi.org/10.1016/j.spmi.2021.106904, (July 2021)
  • 7. I.Erdogan. S.Yavuz, Laser Field effect on self-polarization of a donor impurity in a finite Ga1-xAlxAs/GaAs quantum well, Physica B: Condensed Matter, https://doi.org/10.1016/j.physb.2020.412728 (May 2021)
  • 8. S. Sucu, S. Minez, I. Erdogan, Self-polarization of a donor impurity for the first excited state in an Ga1-xAlxAs/GaAs quantum well, Indian Journal of Physics, 95, pages1691–1695 (2021), https://doi.org/10.1007/s12648-020-01829-w (September 2020)
  • 9. O. Akankan, I. Erdogan, A. I. Mese, E. Cicek, H Akbas (2021) The effects of geometrical shape and impurity position on the self-polarization of a donor impurity in an infinite GaAs/AlAs tetragonal quantum dot, Indian Journal of Physics, 95(7), 1341–1344 (2021), https://doi.org/10.1007/s12648-020-01813-4 (July 2020)
  • 10. A I Mese, E Cicek, I Erdogan, O Akankan and H Akbas, The effect of dielectric constant on binding energy and impurity self-polarization in a GaAs–Ga1-xAlxAs spherical quantum dot, Indian Journal of Physics, DOI 10.1007/s12648-016-0921-y, Vol.91(3), p.263-268 (March 2017)
  • 11. H. Akbas, S. Sucu, S. Minez, C. Dane, O. Akankan, I. Erdogan, Ground state normalized binding energy of impurity in asymmetric quantum wells under hydrostatic pressure, • Superlattices and Microstructures, Volume 94, June 2016, p.131-137 (June 2016)
  • 12. P.Bulut, I.Erdogan, H.Akbas,(2014), Binding energy of 2p-bound state of a hydrogenic donor impurity in a GaAs/Ga1−xAlxAs spherical quantum dot under hydrostatic pressure, Physica E: Low-dimensional Systems and Nanostructures, 63, 299-303. (September 2014)
  • 13. Akbas H, Dane C, Erdogan I, Akankan O (2014). Hydrogenic donor in asymmetric AlxLGa1-xLAs/GaAs/AlxRGa1-xRAs quantum wells. ”, Physica E: Low-dimensional Systems and Nanostructures, 60, 196-199. (June 2014)
  • 14. Erdogan I, Akankan O, Akbas H (2013). Simultaneous effects of temperature, hydrostatic pressure and electric field on the self-polarization and electric field polarization in a GaAs/Ga0.7Al0.3As spherical quantum dot with a donor impurity. SUPERLATTICES AND MICROSTRUCTURES, 59(0), 13-20. (July 2013)
  • 15. Akbas H, Erdogan I, Akankan O (2011). Hydrostatic pressure effects on impurity states in GaAs/AlAs quantum wells. Superlattices and Microstructures, 50(50), 80-89.
  • 16. Erdogan I, Akankan O, Akbas H (2009). Effects of hydrostatic pressure on the self-polarization in GaAs/Ga1-x Alx As quantum wells under the electric field? Physica E: Low-Dimernsional System and Nanostructures, 42, 136-140, 2009.
  • 17. Erdogan I, Akankan O, Akbas H (2006). Electric and magnetic field effects on the self-polarization in GaAs/AlAs cylindrical quantum well-wires, Physica E: Low-Dimernsional System and Nanostructures, 33, 83-87, 2006.
  • 18. Erdogan I, Akankan O, Akbas H (2006). Binding energy and self-polarization as function of energy density in GaAs/AlAs quantum well wires? Physica E: Low-Dimernsional System and Nanostructures, 35, 27-32, 2006.
  • 19. Akankan O, Erdogan I, Akbas H (2006). Spatial electric field effect on the self-polarization in GaAs/AlAs square quantum-well wires? Physica E: Low-Dimernsional System and Nanostructures, 35, 217-221, 2006.
  • 20. Ulas M, Erdogan I, Cicek E, Dalgıc S.S (2005). Self-polarization in GaAs-(Ga, As)As quantum well wires: electric field and geometrical effects, Physica E: Low-Dimernsional System and Nanostructures, 25, 515-520, 2005.
  • 21. Okan S.E, Erdogan I, Akbas H (2004). Anomalous polarization in an electric field and self-polarization in GaAs/AlAs quantum wells and quantum well wires, Physica E: Low-Dimernsional System and Nanostructures, 21, 91-95, 2004.
  • 22. Aktas S, Okan S.E, Erdogan I, Akbas H, Tomak M (2000). Donor binding energies in GaAs quantum wells considering the nonparabolicity effects and the wave function elangation, Supperlattice and Microstructure, 28, 165-169, 2000.

International Conference Proceedings

  • 1. Calculation of binding energy and self-polarization at the 2p-state of a hydrogenic impurity in a GaAs/AlAs spherical quantum dot. "Turkish Physical Society 33rd International Physics Congres" Bodrum Turkey,6-10 September 2017 (September 2017)
  • 2. P.Bulut, I. Erdogan and H. Akbas, Turning points of 2p0 state binding energy of a hydrogenic donor impurity in asymmetric GaAs Ga1 xAlxAs quantum well under hydrostatic pressure, p.126, Turkish Physical Society 32 International Physics Congress, September 6-9 2016, Bodrum/Turkey, (Bildiri Kitabında Özeti Yayımlanmış Poster Sunumu) (September 2016)
  • 3. P.Bulut, I. Erdogan and H. Akbas, Hydrostatic Pressure Effect On Diamagnetic Susceptibilityof a Hydrogenic Donor Impurity in AsymmetricGaAs/Alxl,rGa1−xl,rAs Quantum Wel, p.341, Turkish Physical Society 32 International Physics Congress, September 6-9 2016, Bodrum/Turkey, (Bildiri Kitabında Özeti Yayımlanmış Poster Sunumu) (September 2016)
  • 4. Bulut P, Erdogan I, Akbas H, "Binding energy of a hydrogenic donor impurity in a GaAs/Ga1-xAlxAs quantum well and spherical quantum dot under hydrostatic pressure", 9th International Physics Conference of the Balkan Physical Union, August 2015, Istanbul/Turkey, (Bildiri Kitabında Özeti Yayımlanmış Sözlü Sunum)
  • 5. İlker Oruç, Bülent O Akkoyunlu, İlhan Erdoğan INVESTIGATION OF WET, BULK, AND DEPOSITION CONCENTRATIONS IN KIRKLARELI, TURKEY. 13th International Multidisciplinary Scientific Geoconference SGEM 2013, BULGARIA, 683-688. (SCI-Expanded Kapsamında Taranan, Bildiri Kitabında Tam Metni Yayımlanmış Sözlü Sunum)
  • 6. İlker Oruç, Bülent O Akkoyunlu, İlhan Erdoğan CHEMICAL COMPOSITION OF WET, BULK, AND DRY DEPOSITION IN KIRKLARELI, TURKEY. 13th International Multidisciplinary Scientific Geoconference SGEM 2013, BULGARIA, 559-563. (SCI-Expanded Kapsamında Taranan, Bildiri Kitabında Tam Metni Yayımlanmış Sözlü Sunum)
  • 7. İlker Oruç, Bulent O Akkoyunlu, İlhan Erdoğan ANALYSIS OF WET, BULK AD DRY DEPOSITION CHEMISTRY IN KIRKLARELI, TURKEY. UNITECH -INTERNATIONAL SCIENTIFIC CONFERENCE 16-17 NOVEMBER 2012, GABROVO, BULGARIA. (Bildiri Kitabında Tam Metni Yayımlanmış Sözlü Sunum)
  • 8. İlker Oruç, Yakup E Acar, Bulent O Akkoyunlu, İlhan Erdoğan, Mete TAYANC and Murat DOGRUEL, Comparison of Wet, Bulk and Dry Deposition Between Urban and Rural Regions of Kirklareli, Turkey. (ICBEC 2011) 2011 Internetional Conferance on Biology, Enviroment and Chemistry, Dubai, UAE.(2011), 24(24), 118-122. (Bildiri Kitabında Tam Metni Yayımlanmış Sözlü Sunum)
  • 9. Gizem Şen, Okan Akankan, İlhan Erdoğan, Hasan Akbaş Simetrik ve Antisimetrik Kuantum Kuyularında Elektrik Alan Etkisi: Polarizasyon ve Polarizabilite. Türk Fizik Derneği 27. Uluslararası Fizik Kongresi 14-17 Eylül 2010, İstanbul / TÜRKİYE, 253. (Bildiri Kitabında Özeti Yayımlanmış).
  • 10. Faik Gündoğdu, Hasan Akbaş, İlhan Erdoğan, Okan Akankan Simetrik ve Antisimetrik Kuantum Kuyularında Elektrik Alan Etkisi: Self Polarizasyon ve Self Polarizabilite. Türk Fizik Derneği 27. Uluslararası Fizik Kongresi 14-17 Eylül 2010, İstanbul / TÜRKİYE, 206 (Bildiri Kitabında Özeti Yayımlanmış).

National Conference Proceedings

  • 1. İlhan Erdoğan , Sonsuz kuantum telinde bulunan yabancı atom etkisindeki bir elektrona kuyu duvarlarının etkisi. 10.Yoğun Madde Fiziği Ankara Toplantısı Ulusal Sempozyumu, 14 Kasım 2003, Hacettepe Üniversitesi Mühendislik Fakültesi Fizik Mühendisliği Bölümü, Beytepe / ANKARA.(Bildiri Kitabında Özeti Yayımlanmış Poster Sunumu)
  • 2. İlhan Erdoğan , Düzgün elektrik alan gören sonsuz kuantum telinde hapsedilen elektronun Airy çözümleri ve Elektriksel polarizasyon( Birinci uyarılmış durumda). 10.Yoğun Madde Fiziği Ankara Toplantısı Ulusal Sempozyumu, 14 Kasım 2003, Hacettepe Üniversitesi Mühendislik Fakültesi Fizik Mühendisliği Bölümü, Beytepe / ANKARA. (Bildiri Kitabında Özeti Yayımlanmış Poster Sunumu)
  • 3. İlhan Erdoğan, Sonsuz kuantum kuyusunda bulunan yabancı atom etkisindeki bir elektrona kuyu duvarlarının etkisi. 10.Yoğun Madde Fiziği Ankara Toplantısı Ulusal Sempozyumu, 14 Kasım 2003, Hacettepe Üniversitesi Mühendislik Fakültesi Fizik Mühendisliği Bölümü, Beytepe / ANKARA. (Bildiri Kitabında Özeti Yayımlanmış Poster Sunumu)

National Conferences and Symposiums

  • 1. İlhan Erdoğan, Şevket Erol Okan, Hasan Akbaş İkinci uyarılmış durumda GaAs/AlAs kuantum kuyu ve tellerindeki bir elektronun elektrik alan altındaki beklenmeyen davranışı. . Düzensiz sistemler: Teori ve Uygulamalar; Çalışma Grubu III: Ulusal Sempozyumu, 09-16 Eylül 2003, Karaburun / İZMİR. (ÖZETİ YAYIMLANMAMIŞ SÖZLÜ SUNUM)

Doctoral Dissertations Advised

  • 1. PINAR BULUT(2016), Kuantum Kuyu ve Küresel Kuantum Noktasında Uyarılmış Durum Bağlanma Enerjilerinin Dönüm Noktaları, Trakya University
  • 2. İLKER ORUÇ (2012), Kırklareli'de yaş, bulk ve kuru birikim kompozisyonunun incelenmesi, Trakya University

Master`s Theses Advised

  • 1. KADER ÇETINKAYA (2021), 1s and 2s states of electron confined to Ga1-xAlxAs/AlAs based quantum wells: Numerical Calculations, Trakya University
  • 2. SELİM YAVUZ (2012), Laser effect in quantum wells, Trakya University
  • 3. ELVAN ÖZ (2010), The effect of hydrostatic pressure on GaAs / AlAs quantum wires, Trakya University
  • 4. OLCAY YAMAN (2010), Kuantum kuyu ve tellerine hapsedilen elektronun özellikleri; elektrik alan ve yabancı atom etkisi, Trakya University

Referee Positions

  • 1. (SCI) Philosophical Magazine, Hakemlik Sayısı : 1
  • 2. (Dergipark) Selçuk Üniversitesi Fen Fakültesi Fen Dergisi, Hakemlik Sayısı : 1
  • 3. (Dergipark) International Journal of Advances in Engineering and Pure Sciences :1
  • 4. (SCI) Computational Condansed Matter : 1
  • 5. (SCI) Journal of Applied Physics: 2
  • 6. (SCI) Optics Communications: 1
  • 7. (SCI) Physica Status Solidi B : Basic Solid State Physics: 3
  • 8. (SCI) Physica B: Condensed Matter: 2
  • 9. (SCI) Journal of Luminescence: 2
  • 10. (SCI) Physica E: Low-dimensional Systems and Nanostructures: 6
  • 11. (SCI) Supperlattices and Microstructures: 14

Projects

  • 1. Kırklareli İlinde Yaş, Bulk ve Kuru Birikim Kompozisyonunun İncelenmesi. TÜBAP(İlker Oruç-Doktora) Proje Yürütücüsü: Doç.Dr.İlhan ERDOĞAN
  • 2. Kuantum Kuyularında Laser Etkisi TÜBAP-(Selim Yavuz-Yüksek Lisans) Proje Yürütücüsü: Doç.Dr.İlhan ERDOĞAN
  • 3. Kuantum Kuyu ve Tellerine Hapsedilen Elektronun Özellikleri; Elektrik Alan ve Yabancı Atomun Etkisi. TÜBAP(Olcay Yaman-Yüksek Lisans) Proje Yürütücüsü: Doç.Dr.İlhan ERDOĞAN

Other

  • Number of Citations in SCI: 275 **** Total Number of Citations: 367

» Courses Given

Introduction to Low Dimension Structures, Low Dimension Structures, Basic Information Technologies I, Basic Information Technologies II, Physics I, Physics II, Physics III, Physics IV,