Linear bosonic modes offer a hardware-efficient alternative for quantum information processing but require access to some nonlinearity for universal control. The lack of nonlinearity in photonics has led to encoded measurement-based quantum computing, which rely on linear operations but requires access to resourceful ('nonlinear') quantum states, such as cubic phase states. In contrast, superconducting microwave circuits offer engineerable nonlinearities but suffer from static Kerr nonlinearity. Here, we demonstrate universal control of a bosonic mode composed of a superconducting nonlinear asymmetric inductive element (SNAIL) resonator, enabled by native nonlinearities in the SNAIL element. We suppress static nonlinearities by operating th...
A Kerr-nonlinear parametric oscillator (KPO) is one of the promising devices to realize qubits for u...
The Kerr microcomb has a huge potential advantage as a quantum computing platform because of its lar...
Realization of a room-temperature ultra-fast photon-number-resolving (PNR) quantum nondemolition (QN...
Continuous-variable systems realized in high-coherence microwave cavities are a promising platform f...
A controlled evolution generated by nonlinear interactions is required to perform full manipulation ...
Universal control over a bosonic degree of freedom is key in the quest for quantum-based technologie...
Schr\uf6dinger cat states, quantum superpositions of macroscopically distinct classical states, are ...
Continuous-variable systems realized in high-coherence microwave cavities are a promising platform f...
We provide an explicit construction of a universal gate set for continuous-variable quantum computat...
The interaction strength of an oscillator to a qubit grows with the oscillator's vacuum field fluctu...
Josephson parametric amplifiers have emerged as a promising platform for quantum information process...
Controlling the quantum interface between two bosonic modes is essential in countless implementation...
In this thesis it is presented a novel superconducting microwave circuit, the Gradiometric SNAIL, th...
Superconducting circuits is a promising platform for quantum computing. Quantum information is usual...
Hosting nonclassical states of light in three-dimensional microwave cavities has emerged as a promis...
A Kerr-nonlinear parametric oscillator (KPO) is one of the promising devices to realize qubits for u...
The Kerr microcomb has a huge potential advantage as a quantum computing platform because of its lar...
Realization of a room-temperature ultra-fast photon-number-resolving (PNR) quantum nondemolition (QN...
Continuous-variable systems realized in high-coherence microwave cavities are a promising platform f...
A controlled evolution generated by nonlinear interactions is required to perform full manipulation ...
Universal control over a bosonic degree of freedom is key in the quest for quantum-based technologie...
Schr\uf6dinger cat states, quantum superpositions of macroscopically distinct classical states, are ...
Continuous-variable systems realized in high-coherence microwave cavities are a promising platform f...
We provide an explicit construction of a universal gate set for continuous-variable quantum computat...
The interaction strength of an oscillator to a qubit grows with the oscillator's vacuum field fluctu...
Josephson parametric amplifiers have emerged as a promising platform for quantum information process...
Controlling the quantum interface between two bosonic modes is essential in countless implementation...
In this thesis it is presented a novel superconducting microwave circuit, the Gradiometric SNAIL, th...
Superconducting circuits is a promising platform for quantum computing. Quantum information is usual...
Hosting nonclassical states of light in three-dimensional microwave cavities has emerged as a promis...
A Kerr-nonlinear parametric oscillator (KPO) is one of the promising devices to realize qubits for u...
The Kerr microcomb has a huge potential advantage as a quantum computing platform because of its lar...
Realization of a room-temperature ultra-fast photon-number-resolving (PNR) quantum nondemolition (QN...