Structural mechanics is commonly modeled by (systems of) partial differential equations (PDEs). Except for very simple cases where analytical solutions exist, the use of numerical methods is required to find approximate solutions. However, for many problems of practical interest, the computational cost of classical numerical solvers running on classical, that is, silicon-based computer hardware, becomes prohibitive. Quantum computing, though still in its infancy, holds the promise of enabling a new generation of algorithms that can execute the most cost-demanding parts of PDE solvers up to exponentially faster than classical methods, at least theoretically. Also, increasing research and availability of quantum computing hardware spurs the h...
In quantum computing, calculations are achieved using quantum mechanics. Typically, two main phenome...
Quantum computation is a subject born out of the combination between physics and computer science. I...
In this research notebook on quantum computation and algorithms for quantum engineers, researchers, ...
Structural mechanics is commonly modeled by (systems of) partial differential equations (PDEs). Exce...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
Classical algorithms that simulate the electronic and vibrational structure of atoms and molecules a...
When faced with a quantum-solving problem for partial differential equations, people usually transfo...
Quantum computers can produce a quantum encoding of the solution of a system of differential equatio...
We present quantum numerical methods for the typical initial boundary value problems (IBVPs) of conv...
A new quantum algorithm is proposed to solve Satisfiability(SAT) problems based on the idea of groun...
The aerospace engineering industry is continuously striving for faster methods to solve and optimize...
Identifying computational tasks suitable for (future) quantum computers is an active field of resear...
Quantum computation appears to offer significant advantages over classical computation and this has ...
New computational schemes, symbolic-numerical algorithms and programs implementing the high-accuracy...
Computer simulations of certain natural phenomena are computationally expensive on a classical compu...
In quantum computing, calculations are achieved using quantum mechanics. Typically, two main phenome...
Quantum computation is a subject born out of the combination between physics and computer science. I...
In this research notebook on quantum computation and algorithms for quantum engineers, researchers, ...
Structural mechanics is commonly modeled by (systems of) partial differential equations (PDEs). Exce...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
Classical algorithms that simulate the electronic and vibrational structure of atoms and molecules a...
When faced with a quantum-solving problem for partial differential equations, people usually transfo...
Quantum computers can produce a quantum encoding of the solution of a system of differential equatio...
We present quantum numerical methods for the typical initial boundary value problems (IBVPs) of conv...
A new quantum algorithm is proposed to solve Satisfiability(SAT) problems based on the idea of groun...
The aerospace engineering industry is continuously striving for faster methods to solve and optimize...
Identifying computational tasks suitable for (future) quantum computers is an active field of resear...
Quantum computation appears to offer significant advantages over classical computation and this has ...
New computational schemes, symbolic-numerical algorithms and programs implementing the high-accuracy...
Computer simulations of certain natural phenomena are computationally expensive on a classical compu...
In quantum computing, calculations are achieved using quantum mechanics. Typically, two main phenome...
Quantum computation is a subject born out of the combination between physics and computer science. I...
In this research notebook on quantum computation and algorithms for quantum engineers, researchers, ...