We consider a hybrid digital-analog quantum computing approach, which allows implementing any quantum algorithm without standard two-qubit gates. This approach is based on the always-on interaction between qubits, which can provide an alternative to such gates. We show how digital-analog approach can be applied to simulate the dynamics of fermionic systems, in particular the Fermi-Hubbard model, using fermionic SWAP network and refocusing technique. We concentrate on the effects of connectivity topology, spread of interaction constants as well as on errors of entangling operations. We find that an optimal connectivity topology of qubits for the digital-analog simulation of fermionic systems of arbitrary dimensionality is a chain for spinl...
Numerical techniques have become powerful tools for studying quantum systems. Eventually, quantum co...
Simulating quantum systems is believed to be one of the first applications for which quantum compute...
The simulation of fermionic systems is among the most anticipated applications of quantum computing....
One of the key applications of quantum information is simulating nature. Fermions are ubiquitous in ...
This thesis is a collection of theoretical works aiming at adjusting quantum algorithms to the hardw...
The study of the properties of quantum mechanical systems of many particles occupies a central role ...
This work is a theoretical study of fermionic models. We focus on problems where highly controllable...
Current quantum simulators suffer from multiple limitations such as short coherence time, noisy oper...
As physical implementations of quantum architectures emerge, it is increasingly important to conside...
This work proposes a digital quantum simulation protocol for the linear scattering process of bosons...
The Jordan-Wigner transformation maps a one-dimensional (1D) spin- 1 / 2 system onto a fermioni...
The simulation of quantum systems is one of the most promising applications of quantum computers. In...
Quantum computers promise to revolutionise electronic simulations by overcoming the exponential scal...
Conventional computers are invaluable tools for analysing and predicting the behaviour of the world ...
We briefly review what a quantum computer is, what it promises to do for us and why it is so hard to...
Numerical techniques have become powerful tools for studying quantum systems. Eventually, quantum co...
Simulating quantum systems is believed to be one of the first applications for which quantum compute...
The simulation of fermionic systems is among the most anticipated applications of quantum computing....
One of the key applications of quantum information is simulating nature. Fermions are ubiquitous in ...
This thesis is a collection of theoretical works aiming at adjusting quantum algorithms to the hardw...
The study of the properties of quantum mechanical systems of many particles occupies a central role ...
This work is a theoretical study of fermionic models. We focus on problems where highly controllable...
Current quantum simulators suffer from multiple limitations such as short coherence time, noisy oper...
As physical implementations of quantum architectures emerge, it is increasingly important to conside...
This work proposes a digital quantum simulation protocol for the linear scattering process of bosons...
The Jordan-Wigner transformation maps a one-dimensional (1D) spin- 1 / 2 system onto a fermioni...
The simulation of quantum systems is one of the most promising applications of quantum computers. In...
Quantum computers promise to revolutionise electronic simulations by overcoming the exponential scal...
Conventional computers are invaluable tools for analysing and predicting the behaviour of the world ...
We briefly review what a quantum computer is, what it promises to do for us and why it is so hard to...
Numerical techniques have become powerful tools for studying quantum systems. Eventually, quantum co...
Simulating quantum systems is believed to be one of the first applications for which quantum compute...
The simulation of fermionic systems is among the most anticipated applications of quantum computing....