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E Solano

Publications and source records attributed to E Solano.

At least 19 recordsLinked to original sources

Unconditional two-mode squeezing of separated atomic ensembles.

We propose schemes for the unconditional preparation of a two-mode squeezed state of effective bosonic modes realized in a pair of atomic ensembles interacting collectively with optical cavity and laser fields. The scheme uses Raman transitions between stable atomic ground states and under ideal conditions produces pure entangled states in the steady state. The scheme works both for ensembles confined within a single cavity and for ensembles confined in separate, cascaded cavities.

Journal Article↗

Field squeeze operators in optical cavities with atomic ensembles.

We propose a method of generating unitarily single and two-mode field squeezing in an optical cavity with an atomic cloud. Through a suitable laser system, we are able to engineer a squeeze field operator decoupled from the atomic degrees of freedom, yielding a large squeeze parameter that is scaled up by the number of atoms, and realizing degenerate and nondegenerate parametric amplification. By means of the input-output theory we show that ideal squeezed states and perfect squeezing could be approached at the output. The scheme is robust to decoherence processes.

Journal Article↗

Sequential generation of entangled multiqubit states.

We consider the deterministic generation of entangled multiqubit states by the sequential coupling of an ancillary system to initially uncorrelated qubits. We characterize all achievable states in terms of classes of matrix-product states and give a recipe for the generation on demand of any multiqubit state. The proposed methods are suitable for any sequential generation scheme, though we focus on streams of single-photon time-bin qubits emitted by an atom coupled to an optical cavity. We show, in particular, how to generate familiar quantum information states such as W, Greenberger-Horne-Zeilinger, and cluster states within such a framework.

Journal Article↗

Effect of the M(s) transformation temperature on the wear behaviour of NiTi shape memory alloys for articular prosthesis.

The main objective of this work has been the characterisation and correlation of the wear behaviour of the NiTi shape memory alloys in their different phases. The weight losses for the different alloys in function of the present phase, and of the M(s) transformation temperature are studied. Adhesive wear tests, Pin-on-Disk, according to the ASTM-G99 standard have been carried out. The thermoelastic martensitic transformations that cause the super-elastic effect, the reorientation and coalescence of martensitic plates and the damping effect promotes a high ability to accommodate large deformations without generating permanent damages that causes the wear. The resulting plastic deformation may be accumulated during wear process without generating fracture. The results show that the wear resistance is mainly dependent of the M(s) transformation temperature for both alloys. For the NiTi alloys also the Ni atomic percentage and the hardness of the alloys are important parameters in the wear behavior.

Alloys↗

Ensemble quantum computation with atoms in periodic potentials.

We show how to perform universal quantum computation with atoms confined in optical lattices which works both in the presence of defects and without individual addressing. The method is based on using the defects in the lattice, wherever they are, both to "mark" different copies on which ensemble quantum computation is carried out and to define pointer atoms which perform the quantum gates. We also show how to overcome the problem of scalability in this system.

Journal Article↗

Microstructural, mechanical and citotoxicity evaluation of different NiTi and NiTiCu shape memory alloys.

Transformation temperatures and mechanical properties such as transformation stresses at different temperatures and the superelasticity have been investigated in NiTiCu alloys with various Copper concentrations. The results have been compared with the conventional NiTi alloys. The addition of copper was effective to narrow the stress hysteresis and to stabilize the superelasticity characteristics. Moreover, it produced greater stability on both the transformation temperatures and the forces applied to the different tissues. However, the studies of cell cultured with human fibroblasts showed certain toxicity.

Biocompatible Materials↗

Fresnel representation of the Wigner function: an operational approach.

We present an operational definition of the Wigner function. Our method relies on the Fresnel transform of measured Rabi oscillations and applies to motional states of trapped atoms as well as to field states in cavities. We illustrate this technique using data from recent experiments in ion traps [Phys. Rev. Lett. 76, 1796 (1996)]] and in cavity QED [Nature (London) 403, 743 (2000)]]. The values of the Wigner functions of the underlying states at the origin of phase space are W(|0>)(0)=+1.75 for the vibrational ground state and W(|1>)(0)=-1.4 for the one-photon number state. We generalize this method to wave packets in arbitrary potentials.

Journal Article↗

How to measure the phase diffusion dynamics in the micromaser.

We propose a realistic scheme for measuring the micromaser linewidth by monitoring the phase diffusion dynamics of the cavity field. Our strategy consists of exciting an initial coherent state with the same photon number distribution as the micromaser steady-state field, singling out a purely diffusive process in the system dynamics. After the injection of a counterfield, measurements of the population statistics of a probe atom allow us to derive the micromaser linewidth in all ranges of the relevant parameters, establishing experimentally the distinctive features of the micromaser spectrum due to the discreteness of the electromagnetic field.

Journal Article↗

Strong-driving-assisted multipartite entanglement in cavity QED.

We propose a method of generating multipartite entanglement by considering the interaction of a system of N two-level atoms in a cavity of high quality factor with a strong classical driving field. It is shown that, with a judicious choice of the cavity detuning and the applied coherent field detuning, vacuum Rabi coupling produces a large number of important multipartite entangled states. It is even possible to produce entangled states involving different cavity modes. Tuning of parameters also permits us to switch from Jaynes-Cummings to anti-Jaynes-Cummings-like interaction.

Journal Article↗

Survival after liver transplantation for hepatocellular carcinoma.

BACKGROUND: Selection criteria for patients with hepatocellular carcinoma (HCC) suitable for liver transplantation (LT) include tumor size and number and vascular invasion. There has been a recent trend to expand the transplant criteria for HCC. We reviewed our experience to determine survival following LT based on tumor characteristics. METHODS: A retrospective analysis was performed on 72 patients with HCC who underwent LT between 1985 and July 2002. The Milan criteria were applied for LT candidacy for HCCs that were deemed unresectable from anatomical considerations and/or the severity of underlying cirrhosis. Patients were divided into four groups: group 1: patients with known HCC who satisfied the selection criteria (n = 22); group 2: patients with known HCC that exceeded the criteria (n = 17); group 3: patients with incidental HCC found at pathological examination of the explant (n = 33); group 4: contemporary LT recipients without HCC (n = 935). RESULTS: In the known HCC group, the interval between listing as status 2 and transplantation was 72.2 +/- 133.6 days (median 23 days). Three-year patient survival was 80.2% in group 1, 35.8% in group 2, 63.2% in group 3, and 81.5% in group 4. In group 2 patients, the tumors were significantly larger, had more nodules, and were more often bilobar. In group 3, five (15%) exceeded the criteria mainly because of tumor size and four patients died within 3 years post-LT (three from tumor recurrence). CONCLUSION: Liver transplantation for HCC yields acceptable survival in early-stage tumors, particularly if transplanted soon after listing. Long-term survival was inferior in patients with multiple tumors and tumors that were greater than 5 cm in diameter.

Carcinoma, Hepatocellular↗

Liver transplantation for primary sclerosing cholangitis.

UNLABELLED: Primary sclerosing cholangitis (PSC) is a chronic cholestatic disease that progresses to end-stage liver disease. This report is a retrospective analysis of a Canadian centre experience with liver transplantation (LT) for PSC. Of 1107 LTs performed between 1984 and 2002, 132 were performed on 111 patients with PSC. Patient survival at 1, 3, 5, and 10 years was 84.5%, 84.5%, 83.4%, and 68.9%, respectively. Graft survival at 1, 3, 5, and 10 years was 80.8%, 79.8%, 72.7%, and 55.3%. These were not significantly different from overall patient survival (P =.91) or graft survival (P =.28) in non-PSC patients transplanted over the same time period. Early mortality was predominantly related to primary nonfunction and multi-organ failure; late mortality was predominantly related to malignancy. No patient with known cholangiocarcinoma (CCA) underwent LT, but three patients had an incidental CCA noted on explant pathology. All three died of widespread metastatic disease (10.8, 38.0, and 39.8 months after LT). Nineteen patients lost their primary grafts requiring retransplantation, and two of these patients required a third transplant. Recurrent PSC was detected in six patients and suspected in another six. Four patients have been retransplanted for recurrent PSC. Chronic rejection was detected in nine patients. Eight have required retransplantation. The incidence of biliary complications was 16.2%. CONCLUSIONS: LT is effective therapy for PSC. Patient and graft survival is comparable to that seen in patients transplanted for indications other than PSC, but long-term graft survival may be lower. Recurrent PSC and chronic rejection are the major determinants of graft loss.

Actuarial Analysis↗

Observation of zero current density in the core of jet discharges with lower hybrid heating and current drive.

Simultaneous current ramping and application of lower hybrid heating and current drive (LHCD) have produced a region with zero current density within measurement errors in the core ( r/a< or =0.2) of JET tokamak optimized shear discharges. The reduction of core current density is consistent with a simple physical explanation and numerical simulations of radial current diffusion including the effects of LHCD. However, the core current density is clamped at zero, indicating the existence of a physical mechanism which prevents it from becoming negative.

Journal Article↗

Conditional large Fock state preparation and field state reconstruction in cavity QED.

We propose a scheme for producing large Fock states in cavity QED via the implementation of a highly selective atom-field interaction. It is based on Raman excitation of a three-level atom by a classical field and a quantized field mode. Selectivity appears when one tunes to resonance a specific transition inside a chosen atom-field subspace, while other transitions remain dispersive, as a consequence of the field dependent electronic energy shifts. We show that this scheme can be also employed for reconstructing, in a new and efficient way, the Wigner function of the cavity field state.

Journal Article↗

Mesoscopic superpositions of vibronic collective states of N trapped ions.

We propose a scalable procedure to generate superpositions of motional coherent states and also entangled vibronic states in N trapped ions. Beyond their fundamental importance, these states may be of interest for quantum information processing and may be used in experimental studies on decoherence.

Journal Article↗

Improvement of the friction behaviour of NiTi orthodontic archwires by nitrogen diffusion.

The lack of low friction coefficient for the NiTi superelastic archwires makes difficult the optimal use of these materials in orthodontic applications. In this study, the decrease of this friction coefficient has been achieved by means of nitrogen diffusion heat treatments. The titanium nitride coating has been characterised by means of optical and scanning electron microscopy. Transformation temperatures, critical stresses, hardness and friction coefficient have been determined. Besides, the metallic ion release studies showed that the titanium nitride coating prevents biodegradation.

Biocompatible Materials↗