Residual Energy Analysis in Virtual-to-Dark Energy Conversion<b>Açıklama (Description):</b>
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This simulation evaluates the residual quantum energy remaining after the transformation of virtual energy into stabilized dark energy. The governing relation is<br>Etotal=Edark+∑kΔEkresidualE_{\text{total}} = E_{\text{dark}} + \sum_k \Delta E^{\text{residual}}_kEtotal=Edark+∑kΔEkresidual,<br>and the simulation plots the ratio ΔEresidual/Evirtual\Delta E_{\text{residual}} / E_{\text{virtual}}ΔEresidual/Evirtual for various initial virtual energy values. Results demonstrate that the residual energy ratio remains nearly constant around 8×10−138 \times 10^{-13}8×10−13, indicating that the anti-time transformation process is highly efficient and conserves nearly all input energy. This supports the theoretical claim that no significant dissipation occurs during the transition from quantum fluctuations to dark energy states.
本仿真实验评估了虚拟能量(virtual energy)转化为稳定暗能量(dark energy)后剩余的残余量子能量。其控制关系式为: $$E_{ ext{total}} = E_{ ext{dark}} + sum_k Delta E^{ ext{residual}}_k$$ 本仿真针对不同初始虚拟能量值,绘制了残余能量$Delta E_{ ext{residual}}$与虚拟能量$E_{ ext{virtual}}$的比值$frac{Delta E_{ ext{residual}}}{E_{ ext{virtual}}}$的变化曲线。实验结果表明,该残余能量比值基本稳定在$8 imes10^{-13}$附近,这意味着反时间变换过程具有极高的效率,几乎保留了全部输入能量。该结果佐证了“从量子涨落(quantum fluctuations)到暗能量态的跃迁过程中不存在显著耗散”这一理论主张。




