Schr\uf6dinger cat states, quantum superpositions of macroscopically distinct classical states, are an important resource for quantum communication, quantum metrology and quantum computation. Especially, cat states in a phase space protected against phase-flip errors can be used as a logical qubit. However, cat states, normally generated in three-dimensional cavities and/or strong multi-photon drives, are facing the challenges of scalability and controllability. Here, we present a strategy to generate and preserve cat states in a coplanar superconducting circuit by the fast modulation of Kerr nonlinearity. At the Kerr-free work point, our cat states are passively preserved due to the vanishing Kerr effect. We are able to prepare a 2-compone...
Superconducting circuits is a promising platform for quantum computing. Quantum information is usual...
The ability to prepare a macroscopic mechanical resonator into a quantum superposition state is an o...
Quantum error correction with biased-noise qubits can drastically reduce the hardware overhead for u...
Quantum superpositions of macroscopically distinct classical states, so-called Schr\"{o}dinger cat s...
International audienceQuantum superpositions of macroscopically distinct classical states, so-called...
Source data for the manuscript 'Fast generation of Schrödinger cat states using a Kerr-tunable super...
Linear bosonic modes offer a hardware-efficient alternative for quantum information processing but r...
Encoding quantum information onto bosonic systems is a promising route to quantum error correction. ...
Hosting nonclassical states of light in three-dimensional microwave cavities has emerged as a promis...
Perfect deterministic amplification of arbitrary quantum states is prohibited by quantum mechanics, ...
We show that by engineering the interaction with the environment, there exists a large class of syst...
Kerr nonlinear oscillators driven by a two-photon process are promising systems to encode quantum in...
Continuous-variable systems realized in high-coherence microwave cavities are a promising platform f...
We propose a theoretical protocol to implement multiqubit geometric gates (i.e., the M{\o}lmer-S{\o}...
International audienceWhile dissipation is widely considered to be harmful for quantum coherence, it...
Superconducting circuits is a promising platform for quantum computing. Quantum information is usual...
The ability to prepare a macroscopic mechanical resonator into a quantum superposition state is an o...
Quantum error correction with biased-noise qubits can drastically reduce the hardware overhead for u...
Quantum superpositions of macroscopically distinct classical states, so-called Schr\"{o}dinger cat s...
International audienceQuantum superpositions of macroscopically distinct classical states, so-called...
Source data for the manuscript 'Fast generation of Schrödinger cat states using a Kerr-tunable super...
Linear bosonic modes offer a hardware-efficient alternative for quantum information processing but r...
Encoding quantum information onto bosonic systems is a promising route to quantum error correction. ...
Hosting nonclassical states of light in three-dimensional microwave cavities has emerged as a promis...
Perfect deterministic amplification of arbitrary quantum states is prohibited by quantum mechanics, ...
We show that by engineering the interaction with the environment, there exists a large class of syst...
Kerr nonlinear oscillators driven by a two-photon process are promising systems to encode quantum in...
Continuous-variable systems realized in high-coherence microwave cavities are a promising platform f...
We propose a theoretical protocol to implement multiqubit geometric gates (i.e., the M{\o}lmer-S{\o}...
International audienceWhile dissipation is widely considered to be harmful for quantum coherence, it...
Superconducting circuits is a promising platform for quantum computing. Quantum information is usual...
The ability to prepare a macroscopic mechanical resonator into a quantum superposition state is an o...
Quantum error correction with biased-noise qubits can drastically reduce the hardware overhead for u...