Gate-based quantum computers typically encode and process information in two-dimensional units called qubits. Using d-dimensional qudits instead may offer intrinsic advantages, including more efficient circuit synthesis, problem-tailored encodings and embedded error correction. In this work, we design a superconducting qudit-based quantum processor wherein the logical space of transmon qubits is extended to higher-excited levels. We propose a universal gate set featuring a two-qudit cross-resonance entangling gate, for which we predict fidelities beyond 99% in the d = 4 case of ququarts with realistic experimental parameters. Furthermore, we present a decomposition routine that compiles general qudit unitaries into these elementary gates, r...
The use of multilevel information carriers, also known as qudits, is a promising path for exploring ...
One of the major challenges hindering advancement of quantum computing is the sensitive nature of th...
Recent developments in qudit-based quantum computing, in particular with trapped ions, open interest...
Gate-based quantum computers typically encode and process information in two-dimensional units calle...
This paper concerns the efficient implementation of quantum circuits for qudits. We show that contro...
The development of a universal fault-tolerant quantum computer that can solve efficiently various di...
This thesis mainly summarizes two experiments that relate to building a quantum computer out of supe...
This thesis mainly summarizes two experiments that relate to building a quantum computer out of supe...
16 pages, 11 figuresThe implementation of a universal quantum processor still poses fundamental iss...
Qubits, which are the quantum counterparts of classical bits, are used as basic information units fo...
The way to build a scalable and reliable quantum computer that truly exploits the quantum power face...
16 pages, 11 figuresThe implementation of a universal quantum processor still poses fundamental iss...
16 pages, 11 figuresThe implementation of a universal quantum processor still poses fundamental iss...
Qubits, which are the quantum counterparts of classical bits, are used as basic information units fo...
The way to build a scalable and reliable quantum computer that truly exploits the quantum power face...
The use of multilevel information carriers, also known as qudits, is a promising path for exploring ...
One of the major challenges hindering advancement of quantum computing is the sensitive nature of th...
Recent developments in qudit-based quantum computing, in particular with trapped ions, open interest...
Gate-based quantum computers typically encode and process information in two-dimensional units calle...
This paper concerns the efficient implementation of quantum circuits for qudits. We show that contro...
The development of a universal fault-tolerant quantum computer that can solve efficiently various di...
This thesis mainly summarizes two experiments that relate to building a quantum computer out of supe...
This thesis mainly summarizes two experiments that relate to building a quantum computer out of supe...
16 pages, 11 figuresThe implementation of a universal quantum processor still poses fundamental iss...
Qubits, which are the quantum counterparts of classical bits, are used as basic information units fo...
The way to build a scalable and reliable quantum computer that truly exploits the quantum power face...
16 pages, 11 figuresThe implementation of a universal quantum processor still poses fundamental iss...
16 pages, 11 figuresThe implementation of a universal quantum processor still poses fundamental iss...
Qubits, which are the quantum counterparts of classical bits, are used as basic information units fo...
The way to build a scalable and reliable quantum computer that truly exploits the quantum power face...
The use of multilevel information carriers, also known as qudits, is a promising path for exploring ...
One of the major challenges hindering advancement of quantum computing is the sensitive nature of th...
Recent developments in qudit-based quantum computing, in particular with trapped ions, open interest...