This thesis concerns the generation of quantum states and the characterization of their nonclassical properties. Therefore, an experimental technique to generate squeezed vacuum and coherently displaced squeezed states is presented. In order to characterize nonclassical states, a new experimental technique, the homodyne cross correlation measurement, was realized, showing a so far unknown insight into the quantumness of a squeezed state. Also, an experimentally accessible witnessing approach for the degree of nonclassicality is presented for arbitrary quantum states
A new operator-based condition for distinguishing classical from nonclassical states of quantized ra...
A new operator-based condition for distinguishing classical from nonclassical states of quantized ra...
We revisit quantum state preparation of an oscillator by continuous linear position measurement. Qui...
Squeezed states of light addressed in this Thesis have proved to be the most readily accessible opti...
This chapter reports on theoretical protocols for generating nonclassical states of light and mechan...
We report the experimental realization of squeezed quantum states of light, tailored for new applica...
Squeezed states of light have recently been generated in several laboratories by a variety of techni...
In recent years there has developed a rapidly growing interest in the manifestly quantum or nonclass...
Although squeezed states are nonclassical states, so far, their nonclassicality could not be demonst...
By coupling a macroscopic mechanical oscillator to two microwave cavities, we simultaneously prepare...
A new operator based condition for distinguishing classical from non-classical states of quantised r...
Although squeezed states are nonclassical states, so far, their nonclassicality could not be demonst...
doi:10.1088/1367-2630/9/10/371 Abstract. We report the experimental realization of squeezed quantum ...
The recent development of frequency tunable nonclassical light sources have opened up possibilities ...
We report a versatile instrument, based on a monolithic optical parametric amplifier, which reliably...
A new operator-based condition for distinguishing classical from nonclassical states of quantized ra...
A new operator-based condition for distinguishing classical from nonclassical states of quantized ra...
We revisit quantum state preparation of an oscillator by continuous linear position measurement. Qui...
Squeezed states of light addressed in this Thesis have proved to be the most readily accessible opti...
This chapter reports on theoretical protocols for generating nonclassical states of light and mechan...
We report the experimental realization of squeezed quantum states of light, tailored for new applica...
Squeezed states of light have recently been generated in several laboratories by a variety of techni...
In recent years there has developed a rapidly growing interest in the manifestly quantum or nonclass...
Although squeezed states are nonclassical states, so far, their nonclassicality could not be demonst...
By coupling a macroscopic mechanical oscillator to two microwave cavities, we simultaneously prepare...
A new operator based condition for distinguishing classical from non-classical states of quantised r...
Although squeezed states are nonclassical states, so far, their nonclassicality could not be demonst...
doi:10.1088/1367-2630/9/10/371 Abstract. We report the experimental realization of squeezed quantum ...
The recent development of frequency tunable nonclassical light sources have opened up possibilities ...
We report a versatile instrument, based on a monolithic optical parametric amplifier, which reliably...
A new operator-based condition for distinguishing classical from nonclassical states of quantized ra...
A new operator-based condition for distinguishing classical from nonclassical states of quantized ra...
We revisit quantum state preparation of an oscillator by continuous linear position measurement. Qui...