Horiuchi Sachio, Kobayashi Kensuke, Kumai Reiji, Minami Nao, Kagawa Fumitaka, Tokura Yoshinori
1] National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba 305-8562, Japan [2] CREST, Japan Science and Technology Agency (JST), Tokyo 102-0076, Japan.
Condensed Matter Research Center (CMRC) and Photon Factory, Institute of Materials Structure Science, High Energy Accelerator Research Organization (KEK), Tsukuba 305-0801, Japan.
Nat Commun. 2015 Jun 16;6:7469. doi: 10.1038/ncomms8469.
Quantum phase transition achieved by fine tuning the continuous phase transition down to zero kelvin is a challenge for solid state science. Critical phenomena distinct from the effects of thermal fluctuations can materialize when the electronic, structural or magnetic long-range order is perturbed by quantum fluctuations between degenerate ground states. Here we have developed chemically pure tetrahalo-p-benzoquinones of n iodine and 4-n bromine substituents (QBr4-nIn, n=0-4) to search for ferroelectric charge-transfer complexes with tetrathiafulvalene (TTF). Among them, TTF-QBr2I2 exhibits a ferroelectric neutral-ionic phase transition, which is continuously controlled over a wide temperature range from near-zero kelvin to room temperature under hydrostatic pressure. Quantum critical behaviour is accompanied by a much larger permittivity than those of other neutral-ionic transition compounds, such as well-known ferroelectric complex of TTF-QCl4 and quantum antiferroelectric of dimethyl-TTF-QBr4. By contrast, TTF-QBr3I complex, another member of this compound family, shows complete suppression of the ferroelectric spin-Peierls-type phase transition.
通过将连续相变精细调节至绝对零度来实现量子相变,这对固态科学来说是一项挑战。当简并基态之间的量子涨落扰乱电子、结构或磁长程有序时,有别于热涨落效应的临界现象就会出现。在此,我们合成了具有n个碘原子和4 - n个溴原子取代基的化学纯四卤对苯醌(QBr4 - nIn,n = 0 - 4),以寻找与四硫富瓦烯(TTF)形成的铁电电荷转移配合物。其中,TTF - QBr2I2呈现出铁电中性 - 离子相变,在静水压力下,该相变在从接近绝对零度到室温的宽温度范围内可连续调控。量子临界行为伴随着比其他中性 - 离子转变化合物(如著名的TTF - QCl4铁电配合物和二甲基 - TTF - QBr4量子反铁电体)大得多的介电常数。相比之下,该化合物家族的另一个成员TTF - QBr3I配合物则完全抑制了铁电自旋 - 派尔斯型相变。