The construction of physically relevant low dimensional state models, and the design of appropriate measurements are key issues in tackling quantum state tomography for large dimensional systems. We consider the statistical problem of estimating low rank states in the set-up of multiple ions tomography, and investigate how the estimation error behaves with a reduction in the number of measurement settings, compared with the standard ion tomography setup. We present extensive simulation results showing that the error is robust with respect to the choice of states of a given rank, the random selection of settings, and that the number of settings can be significantly reduced with only a negligible increase in error. We present an argument to e...
Well-controlled quantum devices with their increasing system size face a new roadblock hindering fur...
Extracting tomographic information about quantum states is a crucial task in the quest towards devis...
Projected least squares is an intuitive and numerically cheap technique for quantum state tomography...
We consider the statistical problem of 'compressive' estimation of low rank states (r«d ) with rando...
We consider the statistical problem of 'compressive' estimation of low rank states (r«d ) with rando...
The estimation of high dimensional quantum states is an important statistical problem arising in cur...
The estimation of high dimensional quantum states is an important statistical problem arising in cur...
We consider the statistical problem of 'compressive' estimation of low rank states (r«d ) with rando...
The estimation of high dimensional quantum states is an important statistical problem arising in cur...
Recent experimental progress in the preparation and control of quantum systems has brought to light ...
Recent experimental progress in the preparation and control of quantum systems has brought to light ...
Well-controlled quantum devices with their increasing system size face a new roadblock hindering fur...
We establish methods for quantum state tomography based on compressed sensing. These methods are spe...
Intuitively, if a density operator has small rank, then it should be easier to estimate from experim...
Extracting tomographic information about quantum states is a crucial task in the quest towards devis...
Well-controlled quantum devices with their increasing system size face a new roadblock hindering fur...
Extracting tomographic information about quantum states is a crucial task in the quest towards devis...
Projected least squares is an intuitive and numerically cheap technique for quantum state tomography...
We consider the statistical problem of 'compressive' estimation of low rank states (r«d ) with rando...
We consider the statistical problem of 'compressive' estimation of low rank states (r«d ) with rando...
The estimation of high dimensional quantum states is an important statistical problem arising in cur...
The estimation of high dimensional quantum states is an important statistical problem arising in cur...
We consider the statistical problem of 'compressive' estimation of low rank states (r«d ) with rando...
The estimation of high dimensional quantum states is an important statistical problem arising in cur...
Recent experimental progress in the preparation and control of quantum systems has brought to light ...
Recent experimental progress in the preparation and control of quantum systems has brought to light ...
Well-controlled quantum devices with their increasing system size face a new roadblock hindering fur...
We establish methods for quantum state tomography based on compressed sensing. These methods are spe...
Intuitively, if a density operator has small rank, then it should be easier to estimate from experim...
Extracting tomographic information about quantum states is a crucial task in the quest towards devis...
Well-controlled quantum devices with their increasing system size face a new roadblock hindering fur...
Extracting tomographic information about quantum states is a crucial task in the quest towards devis...
Projected least squares is an intuitive and numerically cheap technique for quantum state tomography...