Estimating the state preparation fidelity of highly entangled states on noisy intermediate-scale quantum (NISQ) devices is an important task for benchmarking and application considerations. Unfortunately, exact fidelity measurements quickly become prohibitively expensive, as they scale exponentially as $O(3^N)$ for $N$-qubit states, using full state tomography with measurements in all Pauli bases combinations. However, Somma and others [PhysRevA.74.052302] established that the complexity could be drastically reduced when looking at fidelity lower bounds for states that exhibit symmetries, such as Dicke States and GHZ States. For larger states, these bounds still need to be tight enough to provide reasonable estimations on NISQ devices. Fo...
With the advance of quantum information technology, the question of how to most efficiently test qua...
Entanglement is the powerful and enigmatic resource central to quantum information processing, which...
Accurate and precise control of large quantum systems is paramount to achieve practical advantages o...
We present a divide-and-conquer approach to deterministically prepare Dicke states $\lvert D_k^n\ran...
We introduce a volumetric benchmark for near-term quantum platforms based on the generation and veri...
The size of the Hilbert space for a multiqubit state scales exponentially with the number of constit...
Estimating the fidelity of state preparation in multi-qubit systems is generally a time-consuming ta...
Abstract Generating and detecting genuine multipartite entanglement (GME) of sizeab...
Current noise levels in physical realizations of qubits and quantum operations limit the applicabili...
We describe a simple method for certifying that an experimental device prepares a desired quantum st...
We introduce an inductive $n$-qubit pure-state estimation method. This is based on projective measur...
Entanglement is generally considered necessary for achieving the Heisenberg limit in quantum metrolo...
We consider quantum metrology with several copies of bipartite and multipartite quantum states. We c...
Several noisy intermediate-scale quantum computations can be regarded as logarithmic-depth quantum c...
Detecting entanglement of multipartite quantum states is an inherently probabilistic process due to ...
With the advance of quantum information technology, the question of how to most efficiently test qua...
Entanglement is the powerful and enigmatic resource central to quantum information processing, which...
Accurate and precise control of large quantum systems is paramount to achieve practical advantages o...
We present a divide-and-conquer approach to deterministically prepare Dicke states $\lvert D_k^n\ran...
We introduce a volumetric benchmark for near-term quantum platforms based on the generation and veri...
The size of the Hilbert space for a multiqubit state scales exponentially with the number of constit...
Estimating the fidelity of state preparation in multi-qubit systems is generally a time-consuming ta...
Abstract Generating and detecting genuine multipartite entanglement (GME) of sizeab...
Current noise levels in physical realizations of qubits and quantum operations limit the applicabili...
We describe a simple method for certifying that an experimental device prepares a desired quantum st...
We introduce an inductive $n$-qubit pure-state estimation method. This is based on projective measur...
Entanglement is generally considered necessary for achieving the Heisenberg limit in quantum metrolo...
We consider quantum metrology with several copies of bipartite and multipartite quantum states. We c...
Several noisy intermediate-scale quantum computations can be regarded as logarithmic-depth quantum c...
Detecting entanglement of multipartite quantum states is an inherently probabilistic process due to ...
With the advance of quantum information technology, the question of how to most efficiently test qua...
Entanglement is the powerful and enigmatic resource central to quantum information processing, which...
Accurate and precise control of large quantum systems is paramount to achieve practical advantages o...