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Exact Synthesis of Multiqutrit Clifford-Cyclotomic Circuits

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arxiv 2405.08136 v5 pith:JPYGI7Q7 submitted 2024-05-13 quant-ph

Exact Synthesis of Multiqutrit Clifford-Cyclotomic Circuits

classification quant-ph
keywords gateclifford-cyclotomicomegaqutrithadamardcircuitclifforddegree
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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It is known that the matrices that can be exactly represented by a multiqubit circuit over the Toffoli+Hadamard, Clifford+$T$, or, more generally, Clifford-cyclotomic gate set are precisely the unitary matrices with entries in the ring $\mathbb{Z}[1/2,\zeta_k]$, where $k$ is a positive integer that depends on the gate set and $\zeta_k$ is a primitive $2^k$-th root of unity. In the present paper, we establish an analogous correspondence for qutrits. We define the multiqutrit Clifford-cyclotomic gate set of degree $3^k$ by extending the classical qutrit gates $X$, $CX$, and $CCX$ with the Hadamard gate $H$ and the $T_k$ gate $T_k=\mathrm{diag}(1,\omega_k, \omega_k^2)$, where $\omega_k$ is a primitive $3^k$-th root of unity. This gate set is equivalent to the qutrit Toffoli+Hadamard gate set when $k=1$, and to the qutrit Clifford+$T_k$ gate set when $k>1$. We then prove that a $3^n\times 3^n$ unitary matrix $U$ can be represented by an $n$-qutrit circuit over the Clifford-cyclotomic gate set of degree $3^k$ if and only if the entries of $U$ lie in the ring $\mathbb{Z}[1/3,\omega_k]$.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Transversal AND in Quantum Codes

    quant-ph 2026-03 conditional novelty 6.0

    A [[6,2,2]] qutrit code with a transversal logical AND is built from a symmetric Clifford+T circuit, and concatenation yields a [[48,2,4]] code.