Recent quantum technologies utilize complex multidimensional processes that govern the dynamics of quantum systems. We develop an adaptive diagonal-element-probing compression technique that feasibly characterizes any unknown quantum processes using much fewer measurements compared to conventional methods. This technique utilizes compressive projective measurements that are generalizable to an arbitrary number of subsystems. Both numerical analysis and experimental results with unitary gates demonstrate low measurement costs, of order O(d(2)) for d-dimensional systems, and robustness against statistical noise. Our work potentially paves the way for a reliable and highly compressive characterization of general quantum devices
An important challenge in quantum information science and quantum computing is the experimental real...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
The temporal evolution of a quantum system can be characterized by quantum process tomography, a com...
We present a compressive quantum process tomography scheme that fully characterizes any rank-deficie...
We introduce a reliable compressive procedure to uniquely characterize any given low-rank quantum me...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
This review serves as a concise introductory survey of modern compressive tomography developed since...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
We present a compressive quantum process tomography scheme that fully characterizes any rank-deficie...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
Quantum state tomography is both a crucial component in the field of quantum information and computa...
Well-controlled quantum devices with their increasing system size face a new roadblock hindering fur...
Quantum process tomography is the task of reconstructing unknown quantum channels from measured data...
In the light of the progress in quantum technologies, the task of verifying the correct functioning ...
Characterization of quantum dynamics is a fundamental problem in quantum physics and quantum informa...
An important challenge in quantum information science and quantum computing is the experimental real...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
The temporal evolution of a quantum system can be characterized by quantum process tomography, a com...
We present a compressive quantum process tomography scheme that fully characterizes any rank-deficie...
We introduce a reliable compressive procedure to uniquely characterize any given low-rank quantum me...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
This review serves as a concise introductory survey of modern compressive tomography developed since...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
We present a compressive quantum process tomography scheme that fully characterizes any rank-deficie...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
Quantum state tomography is both a crucial component in the field of quantum information and computa...
Well-controlled quantum devices with their increasing system size face a new roadblock hindering fur...
Quantum process tomography is the task of reconstructing unknown quantum channels from measured data...
In the light of the progress in quantum technologies, the task of verifying the correct functioning ...
Characterization of quantum dynamics is a fundamental problem in quantum physics and quantum informa...
An important challenge in quantum information science and quantum computing is the experimental real...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
The temporal evolution of a quantum system can be characterized by quantum process tomography, a com...