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personal data approved: 2019. XII. 01.
Personal data
Ádám Gali
name Ádám Gali
name of institution
doctoral school
BME Doctoral School of Physics (Supervisor)
BME George A. Olah Doctoral School of Chemistry and Chemical Technology (Announcer of research topic)
ELTE György Hevesy Doctoral School of Chemistry (Announcer of research topic)
ELTE Doctoral School of Physics (Supervisor)
the share of work in the different doctoral schools. BME Doctoral School of Physics 20%
BME George A. Olah Doctoral School of Chemistry and Chemical Technology 10%
ELTE Doctoral School of Physics 70%
Contact details
E-mail address agalieik.bme.hu
phone number +36 1 463-1580
own web page
Academic title
scientific degree, title Ph.D.
year degree was obtained 2001
discipline to which degree belongs physics
institution granting the degree BME Fizikai Intézet (to be translated)
scientific degree, title DSc
year degree was obtained 2011
discipline to which degree belongs physics
institution granting the degree HAS
Employment
2010 - Wigner Fizikai Kutatóközpont Szilárdtest-fizikai és Optikai Intézet (research institute, not university)
scientific consultant
2010 - Budapest University of Technology and Economics
other (not specified) (egyetemi docens)
2004 - BME Atomfizika Tanszék (research institute, not university)
Thesis topic supervisor
number of doctoral students supervised until now 8
number of students who fulfilled course requirements 6
students who obtained their degrees:
Gergő Thiering PhD 2019  DSP1-BME
Bálint Somogyi PhD 2017  DSP1-BME
Dávid Beke PhD 2017  GAODSCC
Krisztián Szász PhD 2015  DSP2-ELTE
Márton András Vörös PhD 2013  DSP1-BME
Tamás Hornos PhD 2009  DSP1-BME

completed course requirement, without degree or degree granting in process:
Tamás Demján (PhD) 2014/08  DSP2-ELTE
Gyula Károlyházy (PhD) 2018/01  GAODSCC
present PhD students:
Nain Mukesh (PhD) (2023/08)  DSP2-ELTE
András Csóré (PhD) (2020/08)  DSP1-BME
(50%) Péter Udvarhelyi (PhD) (2020/08)  DSP2-ELTE
  Thesis topic proposals
Research
research area computational materials science, quantum mechanical calculation on point defects in semiconductors and semiconductor nanostructures; theoretical and experimental study on semiconductor nanostructures
research field in which current research is conducted physics
chemistry
Publications
2019

Thiering G., Gali A.: The (e g ⊗ e u ) ⊗ E g product Jahn–Teller effect in the neutral group-IV vacancy quantum bits in diamond, npj Computational Materials 5: (1) 18
type of document: Journal paper/Article
language: English
URL 
2019

Udvarhelyi P, Nagy R, Kaiser F, Lee SY, Wrachtrup J, Gali A: Spectrally Stable Defect Qubits with no Inversion Symmetry for Robust Spin-To-Photon Interface, PHYSICAL REVIEW APPLIED 11: (4) 044022
type of document: Journal paper/Article
language: English
URL 
2018

Thiering G, Gali A: Ab Initio Magneto-Optical Spectrum of Group-IV Vacancy Color Centers in Diamond, PHYSICAL REVIEW X 8: (2) 021063
type of document: Journal paper/Article
language: English
URL 
2017

Chou J-P, Retzker A, Gali A: Nitrogen terminated diamond (111) surface for room temperature quantum sensing and simulation, NANO LETTERS 17: (4) pp. 2294-2298.
type of document: Journal paper/Article
number of independent citations: 11
language: English
URL 
2017

Christle DJ, Klimov PV, Casas CFDL, Szasz K, Ivady V, Jokubavicius V, Hassan JU, Syvajarvi M, Koehl WF, Ohshima T, Son NT, Janzen E, Gali A, Awschalom DD: Isolated Spin Qubits in SiC with a High-Fidelity Infrared Spin-to-Photon Interface, PHYSICAL REVIEW X 7: (2) 021046
type of document: Journal paper/Article
number of independent citations: 15
language: English
URL 
2016

Gali A, Demján T, Vörös M, Thiering G, Cannuccia E, Marini A: Electron-vibration coupling induced renormalization in the photoemission spectrum of diamondoids, NATURE COMMUNICATIONS 7: 11327
type of document: Journal paper/Article
number of independent citations: 8
language: English
URL 
2014

Castelletto S, Johnson B, Zachreson C, Beke D, Balogh I, Ohshima Takeshi, Aharonovich I, Gali A: Room Temperature Quantum Emission from Cubic Silicon Carbide Nanoparticles, ACS NANO 8: (8) pp. 7938-7947.
type of document: Journal paper/Article
number of independent citations: 31
language: English
URL 
2014

Castelletto S, Johnson B C, Ivády V, Stavrias N, Umeda T, Gali A, Ohshima T: A silicon carbide room-temperature single-photon source, NATURE MATERIALS 13: pp. 151-156.
type of document: Journal paper/Article
number of independent citations: 120
language: English
URL 
2011

Maze JR, Gali A, Togan E, Chu Y, Trifonov A, Kaxiras E, Lukin MD: Properties of nitrogen-vacancy centers in diamond: the group theoretic approach, NEW JOURNAL OF PHYSICS 13: 025025
type of document: Journal paper/Article
number of independent citations: 151
language: English
URL 
2008

Gali A, Fyta M, Kaxiras E: Ab initio supercell calculations on nitrogen-vacancy center in diamond: Electronic structure and hyperfine tensors, PHYSICAL REVIEW B 77: (15) 155206
type of document: Journal paper/Article
number of independent citations: 127
language: English
Full text 
Number of independent citations to these publications:463 
Scientometric data
list of publications and citations
number of scientific publications that meet accreditation criteria:
282
number of scientific publications:
282
monographs and professional books:
0
monographs/books in which chapters/sections were contributed:
2 
scientific publications published abroad that meet the accreditation criteria:
275
publications not in Hungarian, published in Hungary, meeting the accreditation criteria:
2
number of independent citations to scientific publications and creative works:
4738
further relevant information regarding accreditation (in Hungarian)
~60 invited lectures at international conferences and seminars (Harvard, Berkeley, Heraus Seminar, MRS Meeting, APS March Meeting, etc.)

 
All rights reserved © 2007, Hungarian Doctoral Council. Doctoral Council registration number at commissioner for data protection: 02003/0001. Program version: 2.2358 ( 2017. X. 31. )