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1.
Nat Commun ; 14(1): 3895, 2023 Jul 01.
Article in English | MEDLINE | ID: mdl-37393275

ABSTRACT

One of the core questions of quantum physics is how to reconcile the unitary evolution of quantum states, which is information-preserving and time-reversible, with evolution following the second law of thermodynamics, which, in general, is neither. The resolution to this paradox is to recognize that global unitary evolution of a multi-partite quantum state causes the state of local subsystems to evolve towards maximum-entropy states. In this work, we experimentally demonstrate this effect in linear quantum optics by simultaneously showing the convergence of local quantum states to a generalized Gibbs ensemble constituting a maximum-entropy state under precisely controlled conditions, while introducing an efficient certification method to demonstrate that the state retains global purity. Our quantum states are manipulated by a programmable integrated quantum photonic processor, which simulates arbitrary non-interacting Hamiltonians, demonstrating the universality of this phenomenon. Our results show the potential of photonic devices for quantum simulations involving non-Gaussian states.


Subject(s)
Photons , Physics , Thermodynamics , Entropy , Computer Simulation
2.
Phys Rev Lett ; 121(4): 043601, 2018 Jul 27.
Article in English | MEDLINE | ID: mdl-30095925

ABSTRACT

We observe the unconventional photon blockade effect in quantum dot cavity QED, which, in contrast to the conventional photon blockade, operates in the weak coupling regime. A single quantum dot transition is simultaneously coupled to two orthogonally polarized optical cavity modes, and by careful tuning of the input and output state of polarization, the unconventional photon blockade effect is observed. We find a minimum second-order correlation g^{(2)}(0)≈0.37, which corresponds to g^{(2)}(0)≈0.005 when corrected for detector jitter, and observe the expected polarization dependency and photon bunching and antibunching; close by in parameter space, which indicates the abrupt change from phase to amplitude squeezing.

3.
Opt Lett ; 43(17): 4280-4283, 2018 Sep 01.
Article in English | MEDLINE | ID: mdl-30160707

ABSTRACT

We present an oxide aperture microcavity with embedded quantum dots which utilizes a three-contact design to independently tune the quantum dot wavelength and birefringence of the cavity modes. A polarization splitting tuning of ∼5 GHz is observed. For a typical microcavity polarization splitting, the method can be used to achieve perfect polarization degeneracy that is required for many polarization-based implementations of photonic quantum gates. The embedded quantum dot wavelength can be tuned into resonance with the cavity, independent of the polarization tuning.

4.
Int J Group Psychother ; 41(3): 365-78, 1991 Jul.
Article in English | MEDLINE | ID: mdl-1885253

ABSTRACT

The authors have constructed a Dutch version of Yalom's "Questionnaire for Curative Factors." This Dutch version has been administered to 134 participants of 22 psychotherapy groups in various psychiatric services in the Netherlands. Results concerning validity and reliability of the instrument are presented, as well as concerning the homogeneity of the hypothesized "factors." Differences between types of groups and categories of group members were tested by means of techniques of analysis of variance (ANOVA). Multiple regression analysis was applied in order to detect variables of differential qualities on one or more factors. Only the factor identification, neglected in literature on curative factors, was highly predictable.


Subject(s)
Psychotherapy, Group/statistics & numerical data , Adolescent , Adult , Factor Analysis, Statistical , Female , Humans , Male , Mental Disorders/psychology , Mental Disorders/therapy , Regression Analysis , Reproducibility of Results , Surveys and Questionnaires
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