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From my very limited knowledge of physics, time crystals can theoretically oscillate forever without any excitation at their ground state, though laws of thero
by dhdc 6y ago
From my very limited knowledge of physics, time crystals can theoretically oscillate forever without any excitation at their ground state, though laws of theromodynamics are not broken and energy cannot be extracted from their oscillations. In a normal crystal oscillater, power is needed to keep the crystal oscillating.
- ezconnect 6y agoI have no knowledge of them but the article says it oscillates at lower energy levels, almost nil, compared to a quartz crystals. Since it is still unexplored territory there are lots of possible applications.
- deleted 6y ago[deleted]
- kevin_b_er 6y agoWhile this may be that they can oscillate forever, measuring it is an act of removing energy from it.
- h0l0cube 6y agoSo could it be said then that it's more efficient? Say, you'd need less energy to measure time with a time crystal than a quartz crystal?
- Confusion 6y agoNot necessarily. You can measure things in ways that add energy: e.g. radar waves contribute a tiny bit of energy to the things they bounce off. Yet they measure where objects are. You can also measure some things in ways that add exactly 0 energy. If some quantum system absorbs exactly nothing of a certain wavelength, that tells you something about the system.
- kolinko 6y agoYou don’t need to remove energy from an object to measure it. If you shine a flashlight into a dark room, you are measuring the positions of objects inside, and those objects don’t lose their energy.
- arbitrage 6y agoyou are changing the momentum of the things you are mentioning. the considerations here are on a more quantum scale than furniture in a room.