Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Novel qutrit circuit design for multiplexer, De-multiplexer, and decoder

View through CrossRef
AbstractDesigning conventional circuits present many challenges, including minimizing internal power dissipation. An approach to overcoming this problem is utilizing quantum technology, which has attracted significant attention as an alternative to Nanoscale CMOS technology. The reduction of energy dissipation makes quantum circuits an up-and-coming emerging technology. Ternary logic can potentially diminish the quantum circuit width, which is currently a limitation in quantum technologies. Using qutrit instead of qubit could play an essential role in the future of quantum computing. First, we propose two approaches for quantum ternary decoder circuit in this context. Then, we propose a quantum ternary multiplexer and quantum ternary demultiplexer to exploit the constructed quantum ternary decoder circuit. Techniques to achieve lower quantum cost are of importance. We considered two types of circuits, one in which the output states are always restored to the initial input states and the other in which the states of the output are irrelevant. We compare the proposed quantum ternary circuits with their existing counterparts and present the improvements. It is possible to realize the proposed designs using macro-level ternary gates that are based on the ion-trap realizable ternary 2-qutrit Muthukrishnan–Stroud and 1-qutrit permutation gates.
Title: Novel qutrit circuit design for multiplexer, De-multiplexer, and decoder
Description:
AbstractDesigning conventional circuits present many challenges, including minimizing internal power dissipation.
An approach to overcoming this problem is utilizing quantum technology, which has attracted significant attention as an alternative to Nanoscale CMOS technology.
The reduction of energy dissipation makes quantum circuits an up-and-coming emerging technology.
Ternary logic can potentially diminish the quantum circuit width, which is currently a limitation in quantum technologies.
Using qutrit instead of qubit could play an essential role in the future of quantum computing.
First, we propose two approaches for quantum ternary decoder circuit in this context.
Then, we propose a quantum ternary multiplexer and quantum ternary demultiplexer to exploit the constructed quantum ternary decoder circuit.
Techniques to achieve lower quantum cost are of importance.
We considered two types of circuits, one in which the output states are always restored to the initial input states and the other in which the states of the output are irrelevant.
We compare the proposed quantum ternary circuits with their existing counterparts and present the improvements.
It is possible to realize the proposed designs using macro-level ternary gates that are based on the ion-trap realizable ternary 2-qutrit Muthukrishnan–Stroud and 1-qutrit permutation gates.

Related Results

Design
Design
Conventional definitions of design rarely capture its reach into our everyday lives. The Design Council, for example, estimates that more than 2.5 million people use design-related...
Balanced ternary reversible comparator for qutrit quantum circuits
Balanced ternary reversible comparator for qutrit quantum circuits
Abstract In recent years, quantum computing has emerged as a leading approach for accelerating complex computations, leveraging quantum parallelism and entanglement ...
Easily-Extendable Line Decoder with Low Transistor Count and High Power-Delay Performance
Easily-Extendable Line Decoder with Low Transistor Count and High Power-Delay Performance
Abstract An easily-extendable 12-transistor 2-4 line decoder core is presented for the random-access memory interface such as translation lookaside buffer and the first lev...
Simulation modeling study on short circuit ability of distribution transformer
Simulation modeling study on short circuit ability of distribution transformer
Abstract Under short circuit condition, the oil immersed distribution transformer will endure combined electro-thermal stress, eventually lead to the mechanical dama...
Time-adaptive Unsupervised Auditory Attention Decoding Using EEG-based Stimulus Reconstruction
Time-adaptive Unsupervised Auditory Attention Decoding Using EEG-based Stimulus Reconstruction
Abstract The goal of auditory attention decoding (AAD) is to determine to which speaker out of multiple competing speakers a listener is attending based on the brai...
PERUBAHAN SUHU LINGKUNGAN TERHADAP WAKTU TRIP PADA MINI CIRCUIT BREAKER 6A TIPE C
PERUBAHAN SUHU LINGKUNGAN TERHADAP WAKTU TRIP PADA MINI CIRCUIT BREAKER 6A TIPE C
ABSTRACT The purpose of this research is to know about the effect of current rate increasing and ambient temperature change on tripping time miniature circuit breakers 6A typ...
Efficient and scalable designs for ternary quantum reversible multiplexer and demultiplexer systems
Efficient and scalable designs for ternary quantum reversible multiplexer and demultiplexer systems
Abstract In recent years, ternary reversible logic has become a promising paradigm for advancing low-power, high-performance quantum digital ...
Automated Design of Circuits from Recursion Equations Using Theorem‐Proving Technique
Automated Design of Circuits from Recursion Equations Using Theorem‐Proving Technique
AbstractThis paper aims at establishing the automated design for a circuit by the theorem‐proving technique, by formulating the circuit design as a transformation from the specific...

Back to Top