A quantum algorithm for pairwise sequence alignment
Abstract
DNA Sequence Alignment is the process of aligning DNA sequences in order to identify
similarities between multiple sequences. The primary reason is to sort out the evo lutionary, functional or structural relationships within sequences. In our thesis, we are
trying to design a Quantum Algorithm for finding the optimal alignments between DNA
sequences. This particular method of finding DNA sequences works by mapping the se quence alignment problem to a path searching problem through a 2D graph. The tran sition which converges to a fixed path on the graph is based on a proposed oracle for
profit calculation. In order to generate a graph and create random paths through it, we
searched and analyzed several Quantum Walk Algorithms to align sequences in contrast
to classical random walk search algorithms. Our primary goal is to align DNA sequences
and find the optimal alignments in a faster and efficient way with Grover’s search algo rithm. It is capable of quadratic speeding up of any unstructured search problem. The
intent here is to provide a comprehensive elaboration of how path searching algorithm
works on DNA sequences according to a quantum algorithm.
Keywords
Quantum computing; Qubit; Superposition; Entanglement; Quantum logic gate; Grover’s search algorithm; Quantum fourier transform; Quantum random access memory; DNA sequence; Sequence alignmentDescription
This thesis is submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Computer Science, 2023.Department
Department of Computer Science and Engineering, Brac UniversityType
ThesisCollections
Related items
Showing items related by title, author, creator and subject.
-
An experimental demonstration of quantum NOT gate: transition from classical to quantum regime
Sajeed, Shihan; Haider, A F M Yusuf (© 2010 IEEE, 2010)Path of a photon was considered to be used as qubit for implementing quantum NOT gate. An experimental setup was designed using a Mach-Zehnder interferometer constructed from simple optical devices such as He-Ne lasers, ... -
Analysis of quantum capacitance and quantum hall effect of silicene for different fermi energy
Hasan, Rifat; Hassan, Asif S.; Abedin, Minhaz Ibna; Mondol, Raktim Kumar (© 2015 Institute of Electrical and Electronics Engineers Inc., 2015)Silicene is a monolayer of silicon which is again an isostructure to graphene. Due to zero bandgap of graphene, it is now subsided by silicene which opens new opportunities for electrically tunable electronic devices. But ... -
Quantum computer simulator based on qutrits and the circuit model of quantum computation
Kaonain, Md. Shamsul (BRAC University, 2009-12)The number of quantum bits that can currently be realized is limited; therefore extending the state space to explore multi-valued options is reasonable. A quantum computer simulator based on qutrits (3 valued quantum ...