$\mathbb{Z}_2$ phases and Majorana spectroscopy in paired Bose-Hubbard chains

S. Vishveshwara, D. Weld
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Abstract

We investigate the Bose-Hubbard chain in the presence of nearest-neighbor pairing. The pairing term gives rise to an unusual gapped $\mathbb{Z}_2$ Ising phase that has number fluctuation but no off-diagonal long range order. This phase has a strongly correlated many-body doubly degenerate ground state which is effectively a gap-protected macroscopic qubit. In the strongly interacting limit, the system can be mapped onto an anisotropic transverse spin chain, which in turn can be mapped to the better-known fermionic sister of the paired Bose-Hubbard chain: the Kitaev chain which hosts zero-energy Majorana bound states. While corresponding phases in the fermionic and bosonic systems have starkly different wavefunctions, they share identical energy spectra. We describe a possible cold-atom realization of the paired Bose-Hubbard model in a biased zig-zag optical lattice with reservoir-induced pairing, opening a possible route towards experimental Kitaev chain spectroscopy.
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配对玻色-哈伯德链的$\mathbb{Z}_2$相和Majorana光谱
我们研究了存在最近邻配对的Bose-Hubbard链。配对项产生了一个不寻常的缺口$\mathbb{Z}_2$ Ising相位,该相位具有数字波动,但没有非对角线长距离顺序。该相具有强相关的多体双简并基态,是一个有效的间隙保护宏观量子比特。在强相互作用的极限下,系统可以映射到各向异性的横向自旋链上,而横向自旋链又可以映射到更著名的配对玻色-哈伯德链的费米子姊妹:基塔耶夫链,它具有零能量的马约拉纳束缚态。虽然费米子和玻色子系统中相应的相具有截然不同的波函数,但它们具有相同的能谱。我们描述了一种可能的冷原子实现的配对玻色-哈伯德模型在一个有偏的具有库诱导配对的锯齿形光学晶格中,为实验基塔耶夫链光谱开辟了一条可能的途径。
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