his article presents a cryo-CMOS quantum controller IC for superconducting qubits. The proposed globally synchronized clock system internally generates different local oscillator (LO) frequencies using multiple phase-locked loops (PLLs) driven by a common reference clock. It provides flexibility in spectral management as well as scalability for expansion to a large-scale quantum controller. The test chip includes two PLLs, four pulse modulator channels, and two receiver channels. Implemented chip in 40-nm CMOS shows full functionalities at 3.5 K. The designed pulse modulator circuits are verified with the specifications for expected fidelity of 99.99%.11Nsciescopu
The availability of quantum microprocessors is mandatory, to efficiently run those quantum algorithm...
Quantum computers (QCs) promise significant speedup for relevant computational problems that are int...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
his article presents a cryo-CMOS quantum controller IC for superconducting qubits. The proposed glob...
The Central Institute for Electronic Systems at Forschungszentrum Jülich develops, designs and tests...
Recent advances in solid-state qubit technology are paving the way to fault-tolerant quantum computi...
Quantum computers hold the promise to solve some of the most complex problems of today. The core of ...
This article presents the first cryogenic phase-locked loop (PLL) operating at 4.2 K. The PLL is des...
Building a large-scale quantum computer requires the co-optimization of both the quantum bits (qubit...
In most quantum experiments nowadays the control and readout electronics is placed at room temperatu...
A fault-tolerant quantum computer with millions of quantum bits (qubits) requires massive yet very p...
The most promising quantum algorithms require quantum processors that host millions of quantum bits ...
Quantum computers1 could revolutionize computing in a profound way due to the massive speedup they p...
The feasibility of using commercial CMOS processes for implementing scalable cryogenic control elect...
Microelectronics has shaped the world beyond what was thought possible at the time of its advent. On...
The availability of quantum microprocessors is mandatory, to efficiently run those quantum algorithm...
Quantum computers (QCs) promise significant speedup for relevant computational problems that are int...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...
his article presents a cryo-CMOS quantum controller IC for superconducting qubits. The proposed glob...
The Central Institute for Electronic Systems at Forschungszentrum Jülich develops, designs and tests...
Recent advances in solid-state qubit technology are paving the way to fault-tolerant quantum computi...
Quantum computers hold the promise to solve some of the most complex problems of today. The core of ...
This article presents the first cryogenic phase-locked loop (PLL) operating at 4.2 K. The PLL is des...
Building a large-scale quantum computer requires the co-optimization of both the quantum bits (qubit...
In most quantum experiments nowadays the control and readout electronics is placed at room temperatu...
A fault-tolerant quantum computer with millions of quantum bits (qubits) requires massive yet very p...
The most promising quantum algorithms require quantum processors that host millions of quantum bits ...
Quantum computers1 could revolutionize computing in a profound way due to the massive speedup they p...
The feasibility of using commercial CMOS processes for implementing scalable cryogenic control elect...
Microelectronics has shaped the world beyond what was thought possible at the time of its advent. On...
The availability of quantum microprocessors is mandatory, to efficiently run those quantum algorithm...
Quantum computers (QCs) promise significant speedup for relevant computational problems that are int...
The implementation of a classical control infrastructure for large-scale quantum computers is challe...