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Quantum Love


与帝国理工量子物理学家Venkataraman合作的对量子纠缠理论可视化的合作。 两个量子粒子可以缠结然后分离。 随后测量其中一个,而另一个会在同一瞬间得到反馈,无论它们的距离如何。 然而,相互作用或测量的行为同时会破坏了两个粒子之间的联系。
同时我把这与异地恋中两个恋人的状态与这一理论联系起来。 装置是一对两个气球之间的通信,每个气球直径为1米,每个气球都在一个不同颜色的房间,以说明它们可以在远处分开。 每个气球都配备了传感器和无线电,与另一个气球分享其位置,可以在每个房间的监视器上观察到。
I worked with Venkataraman (ICL). Two quantum particles can become entangled then separated. Subsequently taking a measurement of one has an instantaneous effect on the other, regardless of their distance. However, the act of interacting or measuring simultaneously breaks the connection between the two particles – again visualised in the scientific literature primarily in two-dimensional graphs.
I related this to two lovers in a long distance relationship, unable to get close. This installation focused on the communication between a pair of two balloons, each 1m in diameter, and each in a different coloured room to illustrate that they could be separated at a distance. Each balloon was outfitted with sensors and wireless radios, sharing its position with the other, which could be observed on a monitor in each room.