论文标题

锂硫电池中主要产物的量子化学模拟

Quantum Chemistry Simulations of Dominant Products in Lithium-Sulfur Batteries

论文作者

Rice, Julia E., Gujarati, Tanvi P., Takeshita, Tyler Y., Latone, Joe, Motta, Mario, Hintennach, Andreas, Garcia, Jeannette M.

论文摘要

据报道,对某些工业相关的分子进行了量子化学模拟,对近期量子设备采用了各种量子算法。沿氢化锂(LIH),硫化氢,硫化氢锂和硫化锂的解离曲线计算能量和偶极矩。在所有情况下,我们着重于破坏单个键,以获取有关正在研究的分子物种稳定性的信息。我们使用量子设备的经典模拟器计算这些分子的能量和各种静电性能,硫化锂的能量最多21吨。此外,我们使用IBM量子设备沿LIH的解离途径计算地面能量和偶极矩。据我们所知,这是第一个示例,即在量子硬件上执行的偶极力矩计算。

Quantum chemistry simulations of some industrially relevant molecules are reported, employing variational quantum algorithms for near-term quantum devices. The energies and dipole moments are calculated along the dissociation curves for lithium hydride (LiH), hydrogen sulfide, lithium hydrogen sulfide and lithium sulfide. In all cases we focus on the breaking of a single bond, to obtain information about the stability of the molecular species being investigated. We calculate energies and a variety of electrostatic properties of these molecules using classical simulators of quantum devices, with up to 21 qubits for lithium sulfide. Moreover, we calculate the ground-state energy and dipole moment along the dissociation pathway of LiH using IBM quantum devices. This is the first example, to the best of our knowledge, of dipole moment calculations being performed on quantum hardware.

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