Quantum technologies require pure states, which are often generated by extreme refrigeration. Heat-bath algorithmic cooling is the theoretically optimal refrigeration technique: it shuttles entropy from a multiparticle system to a thermal bath, thereby generating a quantum state with a high degree of purity. Here, we show how to surpass this hitherto-optimal technique by taking advantage of a single binary-outcome measurement. Our protocols can create arbitrary numbers of pure quantum states without any residual mixedness by using a recently discovered device known as a quantum switch to put two operations in superposition, with postselection certifying the complete purification.Comment: 11 pages, 3 figures, 1 appendix; updated references; ...
Interesting problems in quantum computation take the form of finding low-energy states of (pseudo)sp...
We investigate, theoretically and experimentally, the thermodynamic performance of a minimal three-q...
Accurate processing of information is crucial both in technology and in the natural world. To achiev...
We design a measurement-based quantum refrigerator with an arbitrary number of qubits situated in a ...
Preparing a quantum system in a pure state is ultimately limited by the nature of the system\u2019s ...
In classical thermodynamics the work cost of control can typically be neglected. On the contrary, in...
A quantum thermal machine is an open quantum system that enables the conversion between heat and wor...
We present a quantum algorithm for the microcanonical thermal pure quantum (TPQ) method, which has a...
Recent work using tools from quantum information theory has shown that for small systems where quant...
Simultaneous near-certain preparation of qubits (quantum bits) in their ground states is a key hurdl...
We review the recent progress in direct active cooling of the quantum-electric degrees freedom in en...
Preparing a quantum system in a pure state is ultimately limited by the nature of the system\u27s ev...
Cooling quantum systems is arguably one of the most important thermodynamic tasks connected to moder...
Degenerate quantum gases are instrumental in advancing many-body quantum physics and underpin emergi...
The ability to initialize quantum registers in pure states lies at the core of many applications of ...
Interesting problems in quantum computation take the form of finding low-energy states of (pseudo)sp...
We investigate, theoretically and experimentally, the thermodynamic performance of a minimal three-q...
Accurate processing of information is crucial both in technology and in the natural world. To achiev...
We design a measurement-based quantum refrigerator with an arbitrary number of qubits situated in a ...
Preparing a quantum system in a pure state is ultimately limited by the nature of the system\u2019s ...
In classical thermodynamics the work cost of control can typically be neglected. On the contrary, in...
A quantum thermal machine is an open quantum system that enables the conversion between heat and wor...
We present a quantum algorithm for the microcanonical thermal pure quantum (TPQ) method, which has a...
Recent work using tools from quantum information theory has shown that for small systems where quant...
Simultaneous near-certain preparation of qubits (quantum bits) in their ground states is a key hurdl...
We review the recent progress in direct active cooling of the quantum-electric degrees freedom in en...
Preparing a quantum system in a pure state is ultimately limited by the nature of the system\u27s ev...
Cooling quantum systems is arguably one of the most important thermodynamic tasks connected to moder...
Degenerate quantum gases are instrumental in advancing many-body quantum physics and underpin emergi...
The ability to initialize quantum registers in pure states lies at the core of many applications of ...
Interesting problems in quantum computation take the form of finding low-energy states of (pseudo)sp...
We investigate, theoretically and experimentally, the thermodynamic performance of a minimal three-q...
Accurate processing of information is crucial both in technology and in the natural world. To achiev...