Quantum Computer Science Research Group

Funded Projects

Quantum Computer Science

  • Development of a quantum optimization assisted transcranial pulsed current stimulation device for advanced neuroscience applications. Funded By: TÜSEB-2025-B-01, Project No: 46160, Ongoing: 2025-2027
  • Designing of quantum Fourier transform based accelerated quantum arithmetic logic unit. Funded By: TÜBİTAK (3501), Project No:122F298, Completed: 2022-2025

Quantum Heat Engines

  • Performance optimization of the quantum Carnot heat engine on interacting spin system. Funded By: Research Fund of the University of Samsun, Project No:BAP.MÜF.5501.2020.001, Completed, Date: 2020-2021

Journal Articles

Quantum Computing

  • Türkpençe, D. and Çakmak, S. Ultrafast Single-Qubit Gates in the Diabatic Regime. arXiv:2509.23467
  • Kaltehei, A., Kurt, M., Gençten, A., and Çakmak, S. Construction of Boolean logic gates using QFT-based adder architecture. arXiv:2504.17090
  • Kurt, M., Kaltehei, A., Gençten, A., and Çakmak, S. Scalable quantum circuit design for QFT-based arithmetic. arXiv:2411.00260
  • Cover of the Annalen der Physik (Ann. Phys. 4/2024) DOI: 10.1002/andp.202470008
  • Çakmak, S., Kurt, M., and Gençten, A. Quantum Fourier Transform-Based Arithmetic Logic Unit on a Quantum Processor. Annalen der Physik 536, 2300457 (2024).
  • Çakmak, S., Altintas, F. A and Gençten, A. Quantum coherence resourced by the strong nuclear quadrupolar interaction. Phys. Scr. 98, 105110 (2023).
  • Köse, E., Çakmak, S., Gençten, A., Kominis, I. K. and Müstecaplıoğlu, Ö. E. Algorithmic quantum heat engines. Phys. Rev. E 100, 012109 (2019).
  • Gün, A., Çakmak, S. and Gençten, A. Construction of four-qubit quantum entanglement for SI (S = 3/2, I = 3/2) spin system. Quantum Inf Process 12, 205–215 (2013).

Quantum Heat Engines

  • Çakmak, S. and Sedehi, H. R. R. Construction of a quantum Stirling engine cycle tuned by dynamic-angle spinning. Phys. Scr. 98, 105921 (2023).
  • Çakmak, S. and Altintas, F. A nuclear quadrupolar spin quantum heat engine. J. Phys. B: At. Mol. Opt. Phys. 55, 135502 (2022).
  • Çakmak, S. Benchmarking quantum Stirling and Otto cycles for an interacting spin system. Physics Letters A 422, 127796 (2022).
  • Çakmak, S. A feasible quantum heat engine driven by dipole-dipole interaction. JOSA B 4, 39 (2022).
  • Çakmak, S. and Altintas, F. Different constructions and optimization of the irreversible quantum Carnot cycle. Eur. Phys. J. Plus 136, 369 (2021).
  • Çakmak, S., Çandır, M. and Altintas, F. Construction of a quantum Carnot heat engine cycle. Quantum Inf Process 19, 314 (2020).
  • Çakmak, S. and Altintas, F. Quantum Carnot cycle with inner friction. Quantum Inf Process 19, 248 (2020).
  • Çakmak, S., Türkpençe, D. and Altintas, F. Special coupled quantum Otto and Carnot cycles. Eur. Phys. J.  Plus 132, 554 (2017).
  • Çakmak, S., Altintas, F., Gençten, A. and Müstecaplıoğlu, Ö. E. Irreversible work and internal friction in a quantum Otto cycle of a single arbitrary spin. Eur. Phys. J. D 71, 75 (2017).
  • Çakmak, S., Altintas, F. and Müstecaplıoğlu, Ö. E. Irreversibility in a unitary finite-rate protocol: the concept of internal friction. Phys. Scr. 91, 075101 (2016).
  • Çakmak, S., Altintas, F. and Müstecaplıoğlu, Ö. E. Lipkin-Meshkov-Glick model in a quantum Otto cycle. Eur. Phys. J. Plus 131, 197 (2016).

Conference Presentations

Quantum Computer Science

  • Kurt, M., Kaltehei, A., Çakmak, S., and Gençten, A. The Constructions of Up and Down Quantum Counter Circuits For Qudit Systems. Turkish Physical Society 39th International Physics Congress, August 31-September 4, 2023, Bodrum, Türkiye.
  • Kurt, M., Kaltehei, A., Çakmak, S., and Gençten, A. Construction of the NAND gate in quantum computing systems using quantum Fourier Transform. 3rd International Black Sea Modern Scientific Research Congress, March 23-25, 2023, Samsun, Türkiye.