The 'Schrödinger's cat' thought experiment, proposed by Austrian physicist Erwin Schrödinger, serves as a paradigmatic example of the principles of quantum mechanics. By introducing a cat, a radioactive atom, and a radiation detector into a box, Schrödinger aimed to illustrate the concept of superposition, where a quantum system can exist in multiple states simultaneously.
The entanglement of the cat and detector is a crucial aspect of this thought experiment, as it highlights the interconnectedness of their states. According to quantum mechanics, the atom is in a superposition of states – both decayed and not decayed at the same time. This state of superposition is a fundamental property of quantum systems, where particles can exist in multiple configurations simultaneously.
The wave function of the system, which describes the probability of finding the system in a particular state, is in a superposition of states. Only when a measurement is made does the wave function collapse, and the cat becomes either dead or alive. This thought experiment has far-reaching implications for our understanding of quantum mechanics and its application to macroscopic systems.