Quantum computation and simulation with superconducting qubits
Superconducting circuits based on Josephson junctions are regarded as one of the most
promising technologies for the implementation of scalable quantum computers. This review …
promising technologies for the implementation of scalable quantum computers. This review …
Seamless High- Microwave Cavities for Multimode Circuit Quantum Electrodynamics
Multimode cavity quantum electrodynamics—where a two-level system interacts
simultaneously with many cavity modes—provides a versatile framework for quantum …
simultaneously with many cavity modes—provides a versatile framework for quantum …
Interaction between giant atoms in a one-dimensional structured environment
Giant atoms, quantum emitters that couple to light at multiple discrete points, are emerging
as a new paradigm in quantum optics due to their many promising properties, such as …
as a new paradigm in quantum optics due to their many promising properties, such as …
Superconducting microwave cavities and qubits for quantum information systems
Superconducting microwave cavities featuring ultrahigh Q-factors, which measure the
efficiency of energy storage in relation to energy loss in a system, are revolutionizing …
efficiency of energy storage in relation to energy loss in a system, are revolutionizing …
Entangling interactions between artificial atoms mediated by a multimode left-handed superconducting ring resonator
Superconducting metamaterial transmission lines implemented with lumped circuit elements
can exhibit left-handed dispersion, where the group and phase velocity have opposite sign …
can exhibit left-handed dispersion, where the group and phase velocity have opposite sign …
Advancements in superconducting microwave cavities and qubits for quantum information systems
Superconducting microwave cavities with ultra-high Q-factors are revolutionizing the field of
quantum computing, offering long coherence times exceeding 1 ms, which is critical for …
quantum computing, offering long coherence times exceeding 1 ms, which is critical for …
Realizing quantum optics in structured environments with giant atoms
To go beyond quantum optics in free-space setups, atom-light interfaces with structured
photonic environments are often employed to realize unconventional quantum …
photonic environments are often employed to realize unconventional quantum …
A perfect absorber for ultra-long-wave infrared based on a cross-shaped resonator structure
Y Pan, Y Li, F Chen, W Yang, B Wang - Plasmonics, 2024 - Springer
To satisfy the marking demand for microwave absorbing devices, we design an ultra-
broadband nearly perfect absorber. The proposed absorber demonstrates absorption band …
broadband nearly perfect absorber. The proposed absorber demonstrates absorption band …
Circuit QED with giant atoms coupling to left-handed superlattice metamaterials
ZM Gao, JQ Li, ZW Li, WX Liu, X Wang - Physical Review A, 2024 - APS
Giant atoms, where the dipole approximation ceases to be valid, allow us to observe
unconventional quantum optical phenomena arising from interference and time-delay …
unconventional quantum optical phenomena arising from interference and time-delay …
Photon-instanton collider implemented by a superconducting circuit
A Burshtein, R Kuzmin, VE Manucharyan… - Physical Review Letters, 2021 - APS
Instantons, spacetime-localized quantum field tunneling events, are ubiquitous in correlated
condensed matter and high-energy systems. However, their direct observation through …
condensed matter and high-energy systems. However, their direct observation through …