Generation of bipartite mechanical cat state by performing projective Bell state measurement
- URL: http://arxiv.org/abs/2404.16007v1
- Date: Wed, 24 Apr 2024 17:38:32 GMT
- Title: Generation of bipartite mechanical cat state by performing projective Bell state measurement
- Authors: Roson Nongthombam, Urmimala Dewan, Amarendra K. Sarma,
- Abstract summary: Quantum state preparation and measurement of photonic and phononic Schr"odinger cat states have gathered significant interest.
We generate four bipartite phononic Bell cat states using an entanglement swapping scheme achieved through projective Bell state measurements on two superconducting qubits.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Quantum state preparation and measurement of photonic and phononic Schr\"odinger cat states have gathered significant interest due to their implications for alternative encoding schemes in quantum computation. These scheme employ coherent state superpositions, leveraging the expanded Hilbert space provided by cavity or mechanical resonators in contrast to two-level systems. Moreover, such cat states also serve as a platform for testing fundamental quantum phenomena in macroscopic systems. In this study, we generate four bipartite phononic Bell cat states using an entanglement swapping scheme achieved through projective Bell state measurements on two superconducting qubits. Subsequently, we conduct a Bell inequality test on the bipartite cat state using the CHSH formulation. Given that the entangled cat states are generated through entanglement swapping, our approach could hold promising applications for the advancement of complex quantum network processors based on continuous variable systems.
Related papers
- Breeding the Cat Through Superposition of Two Schrodinger Kittens Based on Coupled Waveguides [6.457908814435069]
Optical Schrodinger's cat (SC) is highly anticipated because of the potential of realizing fault-tolerant quantum computing.
Here, we demonstrate a principle that a large SC-like state can be generated by the superposition of two kittens in which two nearby coherent states interfere and grow to an enlarged coherent-like state.
arXiv Detail & Related papers (2024-07-03T03:22:38Z) - Creation and manipulation of Schrödinger cat states of a nuclear spin qudit in silicon [28.4073170440133]
We show the creation and manipulation of Schr"odinger cat states using the spin-7/2 nucleus of a single antimony atom.
Results demonstrate high-fidelity preparation of nonclassical resource states and logical control in a single atomic-scale object.
arXiv Detail & Related papers (2024-05-24T12:22:16Z) - The formation of Schrodinger cat-like states in the process of spontaneous parametric down-conversion [50.161078038675285]
We show the formation of Schrodinger cat-like states during the spontaneous parametric down-conversion process (SPDC)
For the first time, we show the formation of the Schrodinger cat-like states in the fundamental and second harmonic modes under non-dissipative and dissipative regimes.
arXiv Detail & Related papers (2024-05-23T13:11:07Z) - Nonreciprocal Generation of Schr\"{o}dinger Cat State Induced by
Topology [16.939175598826477]
We explore the interplay between quantum nonreciprocity and topology in a one-dimensional microcavity array.
We obtain the Schr"odinger cat state in a chosen direction at the edge cavity, whereas a it classical state in the other direction.
The obtained cat state has nonreciprocal high fidelity, nonclassicality, and quantum coherence.
arXiv Detail & Related papers (2023-12-16T13:30:11Z) - A vertical gate-defined double quantum dot in a strained germanium
double quantum well [48.7576911714538]
Gate-defined quantum dots in silicon-germanium heterostructures have become a compelling platform for quantum computation and simulation.
We demonstrate the operation of a gate-defined vertical double quantum dot in a strained germanium double quantum well.
We discuss challenges and opportunities and outline potential applications in quantum computing and quantum simulation.
arXiv Detail & Related papers (2023-05-23T13:42:36Z) - Schr\"odinger cat states of a 16-microgram mechanical oscillator [54.35850218188371]
The superposition principle is one of the most fundamental principles of quantum mechanics.
Here we demonstrate the preparation of a mechanical resonator with an effective mass of 16.2 micrograms in Schr"odinger cat states of motion.
We show control over the size and phase of the superposition and investigate the decoherence dynamics of these states.
arXiv Detail & Related papers (2022-11-01T13:29:44Z) - The squeezed Kerr oscillator: spectral kissing and phase-flip robustness [0.0]
We realize an elementary quantum optics model, the squeezed Kerr oscillator.
For the first time, we resolve up to the tenth excited state.
Considering the Kerr-cat qubit encoded in this ground state manifold, we achieve for the first time quantum nondemolition readout fidelities greater than 99%.
arXiv Detail & Related papers (2022-09-08T17:21:27Z) - Efficient Bipartite Entanglement Detection Scheme with a Quantum
Adversarial Solver [89.80359585967642]
Proposal reformulates the bipartite entanglement detection as a two-player zero-sum game completed by parameterized quantum circuits.
We experimentally implement our protocol on a linear optical network and exhibit its effectiveness to accomplish the bipartite entanglement detection for 5-qubit quantum pure states and 2-qubit quantum mixed states.
arXiv Detail & Related papers (2022-03-15T09:46:45Z) - Wave-function engineering via conditional quantum teleportation with
non-Gaussian entanglement resource [0.0]
We propose and analyze a setup to tailor the wave functions of the quantum states.
We can generate various classes of quantum states such as Schr"odinger cat states, four-component cat states, superpositions of Fock states, and cubic phase states.
arXiv Detail & Related papers (2021-02-04T01:31:11Z) - Bose-Einstein condensate soliton qubit states for metrological
applications [58.720142291102135]
We propose novel quantum metrology applications with two soliton qubit states.
Phase space analysis, in terms of population imbalance - phase difference variables, is also performed to demonstrate macroscopic quantum self-trapping regimes.
arXiv Detail & Related papers (2020-11-26T09:05:06Z) - Jumptime unraveling of Markovian open quantum systems [68.8204255655161]
We introduce jumptime unraveling as a distinct description of open quantum systems.
quantum jump trajectories emerge, physically, from continuous quantum measurements.
We demonstrate that quantum trajectories can also be ensemble-averaged at specific jump counts.
arXiv Detail & Related papers (2020-01-24T09:35:32Z)
This list is automatically generated from the titles and abstracts of the papers in this site.
This site does not guarantee the quality of this site (including all information) and is not responsible for any consequences.