Path superposition as resource for perfect quantum teleportation with separable states
- URL: http://arxiv.org/abs/2505.11398v1
- Date: Fri, 16 May 2025 16:03:38 GMT
- Title: Path superposition as resource for perfect quantum teleportation with separable states
- Authors: Sayan Mondal, Priya Ghosh, Ujjwal Sen,
- Abstract summary: We show that it is possible to relax the entanglement requirement in quantum teleportation if we have access to a certain strain of superposition of quantum processes.<n>We find that when superposition of paths is incorporated in the protocol, perfect quantum teleportation becomes possible with nonzero probability.
- Score: 0.8192907805418583
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Quantum teleportation is a quintessential quantum communication protocol that enables the transmission of an arbitrary quantum state between two distant parties without physically transmitting the state with the help of shared entanglement and limited classical communication. We show that it is possible to relax the entanglement requirement in quantum teleportation if we have access to a certain strain of superposition of quantum processes. Two types of superposition of quantum processes are generally considered in the literature: superposition of paths identified with quantum maps and superposition of indefinite causal orders of the maps. We find that when superposition of paths is incorporated in the protocol, perfect quantum teleportation becomes possible with nonzero probability, even when the two parties share certain classes of separable states, including pure product states. In contrast, the assistance of superposition of indefinite causal order of quantum maps in teleportation protocol does not enable any quantum advantage for shared pure product states. Furthermore, we show that separable Werner states can also yield quantum advantage in quantum teleportation assisted by the superposition of paths. Finally, we establish that the presence of quantum coherence in the control qubit is both necessary and sufficient to achieve quantum advantage in quantum teleportation assisted with superposition of paths. Our results highlight that while entanglement is a fundamental resource in standard quantum teleportation, superposition of paths can serve as an alternate resource for the same.
Related papers
- Quantum teleportation based on the elegant joint measurement [0.0]
We explore quantum teleportation based on the elegant joint measurement (EJM)
It is a probabilistic teleportation caused by undesired nonunitary quantum evolution.
We show in detail the feasible quantum circuits to realize the present scenario.
arXiv Detail & Related papers (2024-02-04T12:24:11Z) - 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) - Quantum Optical Memory for Entanglement Distribution [52.77024349608834]
Entanglement of quantum states over long distances can empower quantum computing, quantum communications, and quantum sensing.
Over the past two decades, quantum optical memories with high fidelity, high efficiencies, long storage times, and promising multiplexing capabilities have been developed.
arXiv Detail & Related papers (2023-04-19T03:18:51Z) - Overcoming noise in quantum teleportation with multipartite hybrid entanglement [0.0]
We propose an efficient quantum teleportation protocol in the presence of pure decoherence.
We demonstrate our protocol in an all-optical experiment.
arXiv Detail & Related papers (2022-10-26T18:00:03Z) - The power of noisy quantum states and the advantage of resource dilution [62.997667081978825]
Entanglement distillation allows to convert noisy quantum states into singlets.
We show that entanglement dilution can increase the resilience of shared quantum states to local noise.
arXiv Detail & Related papers (2022-10-25T17:39:29Z) - Quantum teleportation of quantum causal structures [0.0]
We develop quantum teleportation of arbitrary quantum causal structures.
The central idea is to just teleport the inputs to and outputs from the operations of agents.
We prove that our partially post-selected teleportation protocol is compatible with all quantum causal structures.
arXiv Detail & Related papers (2022-03-01T13:29:09Z) - Improving the probabilistic quantum teleportation efficiency of
arbitrary superposed coherent state using multipartite even and odd j-spin
coherent states as resource [0.0]
Quantum teleportation is one of the most important techniques for quantum information secure transmission.
We provide a new probabilistic teleportation scheme for arbitrary superposed coherent states.
We show that the perfect quantum teleportation can be done even with a non-maximally entangled state.
arXiv Detail & Related papers (2022-02-17T11:16:12Z) - Remote sensing and faithful quantum teleportation through non-localized
qubits [0.0]
In this paper, we address the idea of remote sensing in a teleportation scenario with topological qubits more robust against noise.
We show that how this nonlocal property, helps us to achieve near-perfect quantum teleportation even with mixed quantum states.
arXiv Detail & Related papers (2021-09-11T13:23:30Z) - Quantum teleportation is a reversal of quantum measurement [0.0]
We introduce a generalized concept of quantum teleportation in the framework of quantum measurement and reversing operation.
Our framework makes it possible to find an optimal protocol for quantum teleportation enabling a faithful transfer of unknown quantum states.
arXiv Detail & Related papers (2021-04-25T15:03:08Z) - Direct Quantum Communications in the Presence of Realistic Noisy
Entanglement [69.25543534545538]
We propose a novel quantum communication scheme relying on realistic noisy pre-shared entanglement.
Our performance analysis shows that the proposed scheme offers competitive QBER, yield, and goodput.
arXiv Detail & Related papers (2020-12-22T13:06:12Z) - Entanglement transfer, accumulation and retrieval via quantum-walk-based
qubit-qudit dynamics [50.591267188664666]
Generation and control of quantum correlations in high-dimensional systems is a major challenge in the present landscape of quantum technologies.
We propose a protocol that is able to attain entangled states of $d$-dimensional systems through a quantum-walk-based it transfer & accumulate mechanism.
In particular, we illustrate a possible photonic implementation where the information is encoded in the orbital angular momentum and polarization degrees of freedom of single photons.
arXiv Detail & Related papers (2020-10-14T14:33:34Z) - Teleporting quantum information encoded in fermionic modes [62.997667081978825]
We consider teleportation of quantum information encoded in modes of a fermionic field.
In particular, one is forced to distinguish between single-mode entanglement swapping, and qubit teleportation with or without authentication.
arXiv Detail & Related papers (2020-02-19T14:15:16Z)
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.