Efficient Design of Ternary Reversible T Flip-Flop Using Quantum Dot Cellular Automata
Fattahi, A., Sabbaghi-Nadooshan, R., Moosazadeh, T., & Haghparast, M. (2024). Efficient Design of Ternary Reversible T Flip-Flop Using Quantum Dot Cellular Automata. Arabian Journal for Science and Engineering, Early online. https://doi.org/10.1007/s13369-024-09631-0
Julkaistu sarjassa
Arabian Journal for Science and EngineeringPäivämäärä
2024Pääsyrajoitukset
Embargo päättyy: 2025-10-14Pyydä artikkeli tutkijalta
Tekijänoikeudet
© King Fahd University of Petroleum & Minerals 2024
Reversible logic circuits are an exciting solution for designing efficient sequential and combinational circuits. Reducing the size of transistors to nanoscale has created new challenges and issues in the field-effect transistor (FET) industry, so alternative technologies are needed. Quantum dot cellular automata (QCA) technology, reversibility, and multi-valued logic can reduce energy loss and occupied area in circuit design. QCA is a new method to design logic circuits in nanotechnology, emerging with nanoelectronics to make more comprehensive and complex logic circuits. In an irreversible logic system, some bits are erased when the system performs any computation, and this causes heat dissipation and energy loss. Using reversible ternary logic instead of previous technologies leads to better performance and saving more energy. In this paper, we proposed a design for ternary quantum dot cellular automata (TQCA) reversible T flip-flop. For the first time, we have proposed circuits that simultaneously combine ternary logic, reversibility, and implementation using ternary QCA technology. Reversible gates are the basis of a reversible circuit, which is implemented in this paper to create a TQCA Toffoli gate and reversible fan-out circuit as the fundamentals of TQCA T flip-flop. In general, T flip-flops are used to implement other more complex sequential circuits, such as counters. The area, delay, cost, and cell count of the proposed TQCA reversible T flip-flop design are compared with those of other related works in binary QCA technology. The occupied area of the proposed TQCA reversible T flip-flop is 0.06 µm2 which is %40 less than that of previous related works.
...
Julkaisija
Springer NatureISSN Hae Julkaisufoorumista
2193-567XAsiasanat
Julkaisu tutkimustietojärjestelmässä
https://converis.jyu.fi/converis/portal/detail/Publication/243546971
Metadata
Näytä kaikki kuvailutiedotKokoelmat
Lisätietoja rahoituksesta
This research did not receive any specific grant from funding agencies in the public, commercial, or not-for-profit sectors.Lisenssi
Samankaltainen aineisto
Näytetään aineistoja, joilla on samankaltainen nimeke tai asiasanat.
-
Advancing Nanoscale Computing : Efficient Reversible ALU in Quantum-Dot Cellular Automata
Nemattabar, Shahrokh; Mosleh, Mohammad; Haghparast, Majid; Kheyrandish, Mohammad (Elsevier, 2024)This paper presents a significant contribution to the field of nanoscale computing by proposing an innovative reversible Arithmetic and Logic Unit (ALU) implemented in Quantum-Dot Cellular Automata (QCA). Reversible logic ... -
Design and simulation of QCA-based 3-bit binary to gray and vice versa code converter in reversible and non-reversible mode
Safaiezadeh, Behrouz; Mahdipour, Ebrahim; Haghparast, Majid; Sayedsalehi, Samira; Hosseinzadeh, Mehdi (Elsevier, 2022)The current Very Large-Scale Integration (VLSI) technology has reached its peak due to the fundamental physical limits of Complementary Metal-Oxide-Semiconductor (CMOS). Quantum-dot Cellular Automata (QCA) is considered a ... -
Qutrit representation of quantum images : new quantum ternary circuit design
Taheri Monfared, Asma; Ciriani, Valentina; Haghparast, Majid (Springer, 2024)Quantum computation is growing in significance and proving to be a powerful tool in meeting the high real-time computational demands of classical digital image processing. However, extensive research has been done on quantum ... -
Design and simulation of efficient combinational circuits based on a new XOR structure in QCA technology
Safaiezadeh, Behrouz; Mahdipour, Ebrahim; Haghparast, Majid; Sayedsalehi, Samira; Hosseinzadeh, Mehdi (Springer, 2021)Quantum-dot cellular automata (QCA), due to its unique characteristics like low power consumption, nanoscale design, and high computing speed is considered as an emerging technology, and it can be used as an alternative ... -
Novel quantum‐dot cellular automata BCD to excess‐3 code converter
Akbari‐Hasanjani, Reza; Kianpour, Moein; Dehbozorgi, Leila; Sabbaghi‐Nadooshan, Reza; Haghparast, Majid (Wiley, 2024)Binary-code decimal (BCD) to Excess-3 converters (BCD-XS3) can be used as an interface between two systems with different codes, and they can be used to synchronize those systems. Two novel approaches for quantum dot ...
Ellei toisin mainittu, julkisesti saatavilla olevia JYX-metatietoja (poislukien tiivistelmät) saa vapaasti uudelleenkäyttää CC0-lisenssillä.