Certain Physical Properties of Single Crystals of Tungsten, Antimony, Bismuth, Tellurium, Cadmium, Zinc, and Tin
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January 1925 |
Eine Methode zur Herstellung einkristalliger Metalle
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December 1924 |
The Production of Large Single Crystals of Lithium Fluoride
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March 1936 |
Quantitative Analysis of Microsegregation in Silicon Grown by the Czochralski Method
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February 1976 |
Quantitative Analysis of the Effects of Destabilizing Vertical Thermal Gradients on Crystal Growth and Segregation: Ga‐Doped Ge
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March 1978 |
The effect of fluctuating growth rates on segregation in crystals grown from the melt
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March 1980 |
Growth rate dependence of the interface distribution coefficient in the system Ge-Ga
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November 1982 |
Analysis of crystal growth characteristics in a conventional vertical Bridgman configuration
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March 1984 |
Lateral photovoltage scanning (LPS) method for the visualization of the solid–liquid interface of Si1−xGex single crystals
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April 2002 |
Photoluminescence of Cd1—xZnxTe Crystals Grown by High-Pressure Bridgman Technique
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August 1997 |
Anomalous segregation during electrodynamic gradient freeze growth of cadmium zinc telluride
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June 2011 |
Interface shapes during vertical bridgman growth of (Pb, Sn)Te crystals
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July 1990 |
Growth and interface study of 2in diameter CdZnTe by THM technique
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September 2010 |
Thermal fields in the bridgman-Stockbarger technique
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November 1985 |
Convection in the vertical Bridgman-Stockbarger technique
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June 1988 |
Growth and characterization of lead bromide crystals
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September 1992 |
A transparent multizone furnace for crystal growth and flow visualization
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September 1994 |
A Study on the Interface Control of Vertical Bridgman Crystal Growth Using a Transparent Multizone Furnace
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March 1996 |
Growth of benzil crystals by vertical dynamic gradient freeze technique in a transparent furnace
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September 1997 |
On-line control of solid–liquid interface by state feedback
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September 1999 |
Active control of interface shape during the crystal growth of lead bromide
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March 1999 |
Auxiliary optical heating for controlled crystal growth
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April 2002 |
Vibroconvective mixing applied to vertical Bridgman growth
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October 2003 |
Growth of 2,5-diphenyloxazole-doped naphthalene crystal by Bridgman method and its fluorescence studies
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April 2008 |
Heat transfer process during the crystallization of benzil grown by the Bridgman–Stockbarger method
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February 2011 |
Interface control by rotating submerged heater/baffle in vertical Bridgman configuration
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September 2018 |
Exploring growth conditions and Eu2+ concentration effects for KSr2I5:Eu scintillator crystals II: Ø 25 mm crystals
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February 2018 |
Crystal Growth and Scintillation Properties of Eu2+ doped Cs4CaI6 and Cs4SrI6
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March 2018 |
Crystal growth and scintillation performance of Cs2HfCl6 and Cs2HfCl4Br2
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February 2018 |
Technique for the video display of X-ray topographic images and its application to the study of crystal growth
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October 1974 |
Observation of the melting-solidification processes of an Al crystal by synchrotron X-ray topography
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September 1985 |
A procedure to visualize the melt-solid interface in Bridgman grown germanium and lead tin telluride
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January 1986 |
In-situ observation of LEC GaAs solid-liquid interface with newly developed X-ray image processing system
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August 1986 |
In-situ observation of solid-liquid interface shape by X-ray radiography during silicon single crystal growth
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September 1988 |
Direct observation by X-ray radiography of convection of molten silicon in the Czochralski growth method
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May 1988 |
Direct observation by X-ray radiography of convection of boric oxide in the GaAs liquid encapsulated czochralski growth
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February 1989 |
Natural and forced convection of molten silicon during Czochralski single crystal growth
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February 1989 |
Flow instability of molten silicon in the Czochralski configuration
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April 1990 |
In-situ observation of impurity diffusion boundary layer in silicon Czochralski growth
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January 1990 |
In-situ monitoring of dopant concentration variation in a silicon melt during Czochralski growth
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July 1991 |
Double-beam x-ray radiography system for three-dimensional flow visualization of molten silicon convection
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October 1993 |
Crystal–melt interface shape and dislocations during the melting of silicon
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January 2003 |
Visualization of liquid-solid interface morphologies in gallium subject to natural convection
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July 1994 |
Radioscopic visualization of indium antimonide growth by the vertical Bridgman-Stockbarger technique
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February 1995 |
A novel vertical Bridgman-Stockbarger crystal growth system with visualization capability
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May 1995 |
A radioscopic technique to study convective fluid dynamics in opaque liquid metals
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July 1997 |
Visualization of convective solidification in a vertical layer of Eutectic Ga-In Melt
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December 1996 |
Visualization study of melting and solidification in convecting hypoeutectic Ga-In alloy
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August 1998 |
Directional Solidification and Melting of Eutectic GaIn
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November 1999 |
A furnace for coherent beam transmission topography applied to ferroelectric crystals: A furnace for coherent beam transmission topography applied to ferroelectric crystals
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June 2009 |
In situ diagnostics of the crystal-growth process through neutron imaging: application to scintillators
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April 2016 |
High resolution neutron counting detectors with microchannel plates and their applications in neutron radiography, diffraction and resonance absorption imaging
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November 2012 |
Optimization of high count rate event counting detector with Microchannel Plates and quad Timepix readout
- Tremsin, A. S.; Vallerga, J. V.; McPhate, J. B.
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Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, Vol. 787
https://doi.org/10.1016/j.nima.2014.10.047
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July 2015 |
Structure and scintillation of Eu2+-activated BaBrCl and solid solutions in the BaCl2–BaBr2 system
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June 2013 |
In-Situ Observation of Phase Separation During Growth of Cs 2 LiLaBr 6 :Ce Crystals Using Energy-Resolved Neutron Imaging
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October 2017 |
In-situ observation and analysis of solid-state diffusion and liquid migration in a crystal growth system: A segregation-driven diffusion couple
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March 2020 |
The redistribution of solute atoms during the solidification of metals
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July 1953 |
The Distribution of Solute in Crystals Grown from the Melt. Part I. Theoretical
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November 1953 |
A Mathematical Analysis of Solute Redistribution During Solidification
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December 1955 |
Theory of transport processes in single crystal growth from the melt
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June 1988 |
Constitutional supercooling surface roughening
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March 2004 |
Fluid dynamics in crystal growth: The good, the bad, and the ugly
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June 2016 |
Development of a new powerful computer code CrysVUN++ especially designed for fast simulation of bulk crystal growth processes
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March 1999 |
Process modeling of the industrial VGF growth process using the software package CrysVUN++
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April 2000 |
A new hybrid method for the global modeling of convection in CZ crystal growth configurations
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May 2007 |
Analysis of the growth of cadmium zinc telluride in an electrodynamic gradient freeze furnace via a self-consistent, multi-scale numerical model
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March 2005 |
Fixed-point convergence of modular, steady-state heat transfer models coupling multiple scales and phenomena for melt–crystal growth
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January 2006 |
An approximate block Newton method for coupled iterations of nonlinear solvers: Theory and conjugate heat transfer applications
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December 2009 |
Multi-scale crystal growth computations via an approximate block Newton method
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April 2010 |
Crystal growth and characterization of alkali-earth halide scintillators
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August 2012 |
Czochralski growth of the mixed halides BaBrCl and BaBrCl:Eu
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February 2016 |
The heat of Fusion of the Alkali Metal Halides
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February 1960 |
Thermal Conductivity of Eight Halide Crystals in the Temperature Range 220°K to 390°K
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August 1960 |
Control of interface shape in the vertical bridgman-stockbarger technique
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January 1974 |
An axial temperature profile curvature criterion for the engineering of convex crystal growth interfaces in Bridgman systems
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June 2017 |
Radial segregation induced by natural convection and melt/solid interface shape in vertical bridgman growth
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October 1983 |
On the problem of radial segregation in an idealized horizontal Bridgman configuration: scaling and numerical approaches
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December 1991 |
Modeling the vertical Bridgman growth of cadmium zinc telluride II. Transient analysis of zinc segregation
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October 1995 |
On the effects of ampoule tilting during vertical Bridgman growth: three-dimensional computations via a massively parallel, finite element method
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September 1996 |
New Segregation Phenomena in Metals
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August 1951 |