We present an implementation of a semi-device-independent protocol of the generation of quantum random numbers in a fully integrated silicon chip. The system is based on a prepare-and-measure scheme, where we integrate a partially trusted source of photons and an untrusted single photon detector. The source is a silicon photomultiplier, which emits photons during the avalanche impact ionization process, while the detector is a single photon avalanche diode. The proposed protocol requires only a few and reasonable assumptions on the generated states. It is sufficient to measure the statistics of generation and detection in order to evaluate the min-entropy of the output sequence, conditioned on all possible classical side information. We dem...
Self-testing and semi-device independent protocols are becoming the preferred choice for quantum tec...
We report upon the realization of a novel multi-bit optical quantum random number generator by conti...
Self-testing and semi-device independent protocols are becoming the preferred choice for quantum tec...
We present an implementation of a semi-device-independent protocol of the generation of quantum rand...
We present an implementation of a semi-device-independent protocol of the generation of quantum rand...
A small-sized photonic quantum random number generator, easy to be implemented in small electronic d...
A robust quantum random number generation methodology has been developed and tested. The physical se...
A small-sized photonic quantum random number generator, easy to be implemented in small electronic ...
We introduce a scheme for a self-testing quantum random-number generator and demonstrate it experime...
We present a new compact photonic quantum random number generator (QRNG) based on an emitter (sourc...
Optical quantum random number generators (QRNGs) are a special class of physical random data sources...
Optical quantum random number generators (QRNGs) are a special class of physical random data sources...
Optical quantum random number generators (QRNGs) are a special class of physical random data sources...
Optical quantum random number generators (QRNGs) are a special class of physical random data sources...
An approach to quantum random number generation based on unambiguous quantum state discrimination is...
Self-testing and semi-device independent protocols are becoming the preferred choice for quantum tec...
We report upon the realization of a novel multi-bit optical quantum random number generator by conti...
Self-testing and semi-device independent protocols are becoming the preferred choice for quantum tec...
We present an implementation of a semi-device-independent protocol of the generation of quantum rand...
We present an implementation of a semi-device-independent protocol of the generation of quantum rand...
A small-sized photonic quantum random number generator, easy to be implemented in small electronic d...
A robust quantum random number generation methodology has been developed and tested. The physical se...
A small-sized photonic quantum random number generator, easy to be implemented in small electronic ...
We introduce a scheme for a self-testing quantum random-number generator and demonstrate it experime...
We present a new compact photonic quantum random number generator (QRNG) based on an emitter (sourc...
Optical quantum random number generators (QRNGs) are a special class of physical random data sources...
Optical quantum random number generators (QRNGs) are a special class of physical random data sources...
Optical quantum random number generators (QRNGs) are a special class of physical random data sources...
Optical quantum random number generators (QRNGs) are a special class of physical random data sources...
An approach to quantum random number generation based on unambiguous quantum state discrimination is...
Self-testing and semi-device independent protocols are becoming the preferred choice for quantum tec...
We report upon the realization of a novel multi-bit optical quantum random number generator by conti...
Self-testing and semi-device independent protocols are becoming the preferred choice for quantum tec...