Increasingly sophisticated quantum computers motivate the exploration of their abilities in certifying genuine quantum phenomena. Here, we demonstrate the power of state-of-the-art IBM quantum computers in correlation experiments inspired by quantum networks. Our experiments feature up to 12 qubits and require the implementation of paradigmatic Bell-State Measurements for scalable entanglement-swapping. First, we demonstrate quantum correlations that defy classical models in up to nine-qubit systems while only assuming that the quantum computer operates on qubits. Harvesting these quantum advantages, we are able to certify 82 basis elements as entangled in a 512-outcome measurement. Then, we relax the qubit assumption and consider quantum n...
A quantum computer promises efficient processing of certain computational tasks that are intractable...
This thesis consists of two parts. The main part is concerned with new schemes for measurement-based...
Universal quantum computers are potentially an ideal setting for simulating many-body quantum dynami...
Increasingly sophisticated quantum computers motivate the exploration of their abilities in certifyi...
We test the quantumness of IBM’s quantum computer IBM Quantum System One in Ehningen, Germany. We ge...
The ability to prepare sizeable multi-qubit entangled states with full qubit control is a critical m...
Quantum information has the potential to disrupt the present computational landscape. Much of this p...
Measurement-based quantum computation (or the one-way quantum computation) is a model in which a ser...
Quantum entanglement, has been acknowledged as a precious resource due to its inherent nonclassical ...
Quantum information science explores the frontier of highly complex quantum states, the “entanglemen...
Quantum computers are on the brink of surpassing the capabilities of even the most powerful classica...
Quantum computers are on the brink of surpassing the capabilities of even the most powerful classica...
Around the world, small bands of such engineers have been working on this approach for decades. Usin...
In the past two decades, the union of quantum mechanics and information science has led to significa...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2022, Tutor: ...
A quantum computer promises efficient processing of certain computational tasks that are intractable...
This thesis consists of two parts. The main part is concerned with new schemes for measurement-based...
Universal quantum computers are potentially an ideal setting for simulating many-body quantum dynami...
Increasingly sophisticated quantum computers motivate the exploration of their abilities in certifyi...
We test the quantumness of IBM’s quantum computer IBM Quantum System One in Ehningen, Germany. We ge...
The ability to prepare sizeable multi-qubit entangled states with full qubit control is a critical m...
Quantum information has the potential to disrupt the present computational landscape. Much of this p...
Measurement-based quantum computation (or the one-way quantum computation) is a model in which a ser...
Quantum entanglement, has been acknowledged as a precious resource due to its inherent nonclassical ...
Quantum information science explores the frontier of highly complex quantum states, the “entanglemen...
Quantum computers are on the brink of surpassing the capabilities of even the most powerful classica...
Quantum computers are on the brink of surpassing the capabilities of even the most powerful classica...
Around the world, small bands of such engineers have been working on this approach for decades. Usin...
In the past two decades, the union of quantum mechanics and information science has led to significa...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2022, Tutor: ...
A quantum computer promises efficient processing of certain computational tasks that are intractable...
This thesis consists of two parts. The main part is concerned with new schemes for measurement-based...
Universal quantum computers are potentially an ideal setting for simulating many-body quantum dynami...