1、

Finally, the high quality NBW crystal of 50 mm in diameter and 35mm in length was generated at first time hi the country.

最终在国内首次长出Φ45mm×35mm大尺寸、高质量的钨酸铋钠晶体;

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2、

The present development and applied future of Nd: NaBi ( WO4) 2 ( for short: Nd: NBW) crystal is introduced.

研究了Nd:NBW(分子式:Nd:NaBi(WO4)2)以及二元钨酸盐的国内外发展现状和应用前景。

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3、

A new Ferroelectric Crystal LNN with MPB Composition

新的变晶相界组成的铁电晶体LNN

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4、

The atomic and molecular design for the repulsive potential function between atoms and formula of cohesive energy in LiH crystal at high prssure

高压下氢化锂晶体中的离子间力与结合能公式的原子分子设计

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5、

Study shows that LGS crystal is a kind of good piezoelectric material 、 electro-optic material and surface acoustic wave ( SAW) material.

研究表明,硅酸镓镧晶体是一种性能优异的压电材料、电光材料和声表面波材料。

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6、

Secondly, we take the KLN crystal with refractive index modulation as a SHG medium for ultrashort pulses.

其次采用了具有折射率调制的铌酸钾锂晶体作为超短脉冲的倍频介质。

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7、

Study on the Growth and Structure of KLN Crystal and Its Property

KLN晶体的生长及其结构性能的研究

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8、

The primary factors of the cracking of KLN crystal have been discussed;

探讨了KLN晶体生长时开裂的主要原因;

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9、

Optical Properties of Fe: KLN Crystal

Fe:KLN晶体的光折变性能

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10、

Characteristic Raman Peaks and IR Reflection Bands of Nb O Octahedron Ion in KLN Crystal

Nb-O八面体离子在KLN晶体中的特征Raman峰和IR反射带

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11、

The potassium lithium niobate ( KLN) crystal has been grown by Czochralski method;

用提拉法生长出铌酸锂钾(KLN)晶体;

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12、

As determined by the ice crystal geometry, a bright gibbous Moon illuminates the scene from beyond the picture's right edge, 22 degrees from the lovely paraselene.

据冰晶的几何形状计算,照亮影像视野的明亮凸盈月,位在影像的右缘之外,与美丽的幻月相隔22度。

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13、

Structure and Spectra Characteristics of KYb ( WO_4)_2 Crystal Grown by Kyropoulos Method

泡生法生长KYb(WO4)2晶体及其结构与光谱性能

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14、

Growth and spectral analysis of tm~ ( 3+) doped kyb ( wo_4)_2 self-activated laser crystal

Tm~(3+)掺杂KYb(WO4)2自激活激光晶体生长与光谱特性分析

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15、

Study on Growth and Photorefractive Effects of Cu: KTN Crystal

Cu:KTN晶体的生长和光折变研究

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16、

Studies on Crystal KPT ( KTiPO 4) Electro optic Switch

KTP(KTiPO4)晶体电光开关研究

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17、

This paper investigated the law of KPB crystal twinning using microcrystallography, chemical etching and optical method.

本文采用显微结晶、化学浸蚀和光学方法研究了KPB晶体的孪生规律。

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18、

However, the most likely explanation is that heat is transferred poorly within the crystal.

不过, 最有可能的解释是晶体内热传递低.

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19、

Structure and Vibration Spectrum of Laser Crystal Yb: KGd ( WO_4)_2

Yb:KGd(WO4)2激光晶体结构与振动光谱

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20、

This paper is based on the fast growth method of KDP single crystal.

本文是建立在KDP晶体快速生长方法基础之上。

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