Scalable Implementation of Boson Sampling with Trapped Ions
Масштабируемая реализация boson sampling с использованием захваченных ионов
2014-02-06
SCID: 54.1/8m2b8krw
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Fock state preparation and readoutboson samplinglocal transverse phonon modestrapped ionsuniversal mode mixing
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Abstract (AI)
Boson sampling solves a classically intractable problem by sampling from a probability distribution given by matrix permanents. We propose a scalable implementation of boson sampling using local transverse phonon modes of trapped ions to encode the bosons. The proposed scheme allows deterministic preparation and high-efficiency readout of the bosons in the Fock states and universal mode mixing. With the state-of-the-art trapped ion technology, it is feasible to realize boson sampling with tens of bosons by this scheme, which would outperform the most powerful classical computers and constitute an effective disproof of the famous extended Church-Turing thesis.
Key Findings
1
A scalable implementation of boson sampling is proposed using local transverse phonon modes of trapped ions to encode bosons.
2
Realizing this scheme at that scale would effectively disprove the extended Church-Turing thesis.
3
The scheme enables deterministic preparation and high-efficiency readout of bosons in Fock states.
4
Universal mode mixing among phonon modes is achievable within the proposed trapped-ion setup.
5
With current state-of-the-art trapped ion technology, boson sampling with tens of bosons is feasible and would outperform the most powerful classical computers.
Research Object
Boson sampling implemented using local transverse phonon modes of trapped ions
Research Subject
Scalable implementation enabling deterministic Fock-state preparation, high-efficiency readout, and universal mode mixing to realize boson sampling with tens of bosons
Publication Details
Publication Date
2014-02-06
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