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In a groundbreaking episode, Dr. Dumke and his colleagues challenge the boundaries separating quantum mechanics and biological systems, two realms often seen as incompatible. Taking center stage is the tardigrade—a microscopic marvel known for its resilience against harsh conditions. Dr. Dumke's team leverages the tardigrade's unique ability to enter cryptobiosis, unveiling its potential to couple with a superconducting quantum bit and even achieve a state of entanglement. As the narrative unfolds, listeners will be captivated by the tale of this tiny creature's journey through extreme temperatures and pressures, culminating in its revival after a record-breaking stint in a quantum environment. Join us for a dive into a realm where the lines between life and quantum physics blur, challenging our understanding of both domains. https://doi.org/10.48550/arXiv.2112.07978
By Catarina CunhaIn a groundbreaking episode, Dr. Dumke and his colleagues challenge the boundaries separating quantum mechanics and biological systems, two realms often seen as incompatible. Taking center stage is the tardigrade—a microscopic marvel known for its resilience against harsh conditions. Dr. Dumke's team leverages the tardigrade's unique ability to enter cryptobiosis, unveiling its potential to couple with a superconducting quantum bit and even achieve a state of entanglement. As the narrative unfolds, listeners will be captivated by the tale of this tiny creature's journey through extreme temperatures and pressures, culminating in its revival after a record-breaking stint in a quantum environment. Join us for a dive into a realm where the lines between life and quantum physics blur, challenging our understanding of both domains. https://doi.org/10.48550/arXiv.2112.07978