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开放量子比特系统中热放松的变量量子模拟,采用非添加性散射
Lucas Q Galvão1,2, Antonio Cesar do Prado Rosa Junior3, Marcelo A Moret2
1SENAI CIMATEC, QuIIN-Quantum Industrial Innovation, Centro de Competência Embrapii Cimatec, Av. Orlando Gomes, 1845, CEP 41850-010 Salvador, BA, Brazil.
Physical review. E
|December 23, 2025
概括
本研究应用变量量子模拟 (VQS) 来在有限温度下建模开放量子系统. 该方法准确地模拟了散射效应,并显示了量子计算的更光滑的控制场的改进准确性.
科学领域:
- 量子计算是一种量子计算.
- 量子模拟的量子模拟
- 开放的量子系统 开放的量子系统
背景情况:
- 在有限温度下模拟开放的量子系统对于理解现实的量子设备至关重要.
- 短期的量子硬件由于噪音和不连贯性而带来挑战.
研究的目的:
- 为了适应变量量子模拟 (VQS) 框架的有限温度开放系统动态.
- 使用通用振幅阻尼 (GAD) 通道和林布拉德表示法,模拟与热浴的能量交换.
- 为非添加性放松时间引入一个概括的Arrhenius定律,以探索各种激活行为.
主要方法:
- 将GAD频道嵌入到VQS算法中.
- 使用Lindblad表示来模拟散射效应.
- 基于参数q的概括Arrhenius定律实施一个非添加式放松时间模型.
主要成果:
- 在GAD下,VQS准确地绘制了有效的非单元发电机.
- 使用非添加参数实现的更光滑的驱动外,通过抑制高频组件来减少模拟错误.
- 变数组表现出动态选择性,随着对参数q的灵敏度的增加,保持映射准确性.
结论:
- 该VQS框架是模拟有限温度开放量子系统在近期量子硬件上的可行工具.
- 非添加式放松时间模型和优化的驱动外提高了模拟的准确性和稳定性.
- 变量多元体中的动态选择性是保持复杂量子模拟中的忠实性的关键.
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