Exponential Expansion of Massive Schrödinger Cats for Sensing and Entanglement

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Braccini, Lorenzo, Serafini, Alessio, Bose, Sougato
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866917755084603392
author Braccini, Lorenzo
Serafini, Alessio
Bose, Sougato
author_facet Braccini, Lorenzo
Serafini, Alessio
Bose, Sougato
contents Schrödinger cat states of levitated masses have several applications in sensing and, offer an avenue to explore the fundamental nature -- classical vs nonclassical -- of gravity, eg, through gravitationally induced entanglement (GIE). The interaction between a qubit and a levitated mass is a convenient method to create such a cat state. The size of the superpositions is limited by weak mass-qubit interactions. To overcome this limitation, we propose a protocol that exponentially expands an initially small superposition via Gaussian dynamics and successfully recombines it to complete an interferometry. An unknown force can be sensed by the superposition exponentially fast in the expansion time. The entanglement between two such interferometers interacting via a quantum force is -- for the first time in qubit-based non-Gaussian protocols -- obtained by solving the full quantum dynamics using Gaussian techniques. GIE grows exponentially, thereby making it closer to experimental feasibility. Requirements of experimental precision and decoherence are obtained.
format Preprint
id arxiv_https___arxiv_org_abs_2408_11930
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Exponential Expansion of Massive Schrödinger Cats for Sensing and Entanglement
Braccini, Lorenzo
Serafini, Alessio
Bose, Sougato
Quantum Physics
General Relativity and Quantum Cosmology
Schrödinger cat states of levitated masses have several applications in sensing and, offer an avenue to explore the fundamental nature -- classical vs nonclassical -- of gravity, eg, through gravitationally induced entanglement (GIE). The interaction between a qubit and a levitated mass is a convenient method to create such a cat state. The size of the superpositions is limited by weak mass-qubit interactions. To overcome this limitation, we propose a protocol that exponentially expands an initially small superposition via Gaussian dynamics and successfully recombines it to complete an interferometry. An unknown force can be sensed by the superposition exponentially fast in the expansion time. The entanglement between two such interferometers interacting via a quantum force is -- for the first time in qubit-based non-Gaussian protocols -- obtained by solving the full quantum dynamics using Gaussian techniques. GIE grows exponentially, thereby making it closer to experimental feasibility. Requirements of experimental precision and decoherence are obtained.
title Exponential Expansion of Massive Schrödinger Cats for Sensing and Entanglement
topic Quantum Physics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2408.11930