Super-Constant Weight Dicke States in Constant Depth Without Fanout
Lucas Gretta, Meghal Gupta, Malvika Raj Joshi

TL;DR
This paper presents the first constant-depth quantum circuits for preparing Dicke states of weight up to polylogarithmic in size without fanout gates, advancing quantum state preparation in the NISQ era.
Contribution
It introduces explicit QAC^0 circuits for super-constant weight Dicke states using only multi-qubit Toffoli gates, avoiding fanout gates for certain weights, and extends to arbitrary symmetric states.
Findings
First QAC^0 construction for super-constant weight Dicke states.
Preparation of any superposition of Dicke states with FANOUT_k in QAC^0.
Constant-depth construction for arbitrary symmetric states with FANOUT_n.
Abstract
An -qubit Dicke state of weight , is the uniform superposition over all -bit strings of Hamming weight . Dicke states are an entanglement resource with important practical applications in the NISQ era and, for instance, play a central role in Decoded Quantum Interferometry (DQI). Furthermore, any symmetric state can be expressed as a superposition of Dicke states. First, we give explicit constant-depth circuits that prepare -qubit Dicke states for all , using only multi-qubit Toffoli gates and single-qubit unitaries. This gives the first construction of super-constant weight Dicke states. Previous constant-depth constructions for any super-constant required the FANOUT gate, while is only known to implement FANOUT for up to . Moreover, we show that any weight- Dicke state can be…
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