Shock wave induced defect engineering on structural and optical properties of pure and dye doped potassium dihydrogen phosphate crystals

Author:

Aswathappa Sivakumar1,Palaniyasan Eniya2,Dhas Sathiyadhas Sahaya Jude3,Jayaperumal Kalyana Sundar2,Paramasivam Sivaprakash4,Sonachalam Arumugam4,Dhas Sathiyadhas Amalapushpam Martin Britto1

Affiliation:

1. Department of Physics , Abdul Kalam Research Center, Sacred Heart College , Tirupattur , Vellore , 635601 , Tamil Nadu , India

2. Department of Physics , Periyar University , Salem , 636011 , Tamil Nadu , India

3. Department of Physics , Kings Engineering College , Sriperumbudur , Chennai , 602117 , Tamil Nadu , India

4. Centre for High Pressure Research, School of Physics , Bharathidasan University , Tiruchirapalli , 620024 , Tamil Nadu , India

Abstract

Abstract Based on the importance of the shock recovery experiments, the authors report the structural and optical properties of pure and 0.001 M dye-doped potassium dihydrogen phosphate (KDP) crystals for virgin and shock wave loaded samples. Rhodamine B and Methylene blue dyes are selected as dopants to be doped with KDP crystal for the present investigation. The test crystals of pure and doped KDP crystals are grown by slow evaporation technique and cut and polished crystals of (200) face are used for the present investigation. Table-top pressure driven shock tube is utilized for the shock wave generation and the used functional Mach number is 1.7. Virgin and shock wave loaded test crystals’ surface morphology, structural properties and optical transmissions are observed using optical microscope, powder X-ray diffractometer and UV-Visible spectrometer, respectively. Crystalline nature and optical transmission of pure and doped KDP crystals are found to have reduced by the impact of shock waves. It occurs due to the enhancement of defect concentration on the surface of the test crystals. From the observed results, we assert that the pure KDP crystal is relatively more stable to shock wave induced damage compared to doped KDP crystals as reflected by structural and optical studies.

Funder

Department of Science and Technology

Publisher

Walter de Gruyter GmbH

Subject

Inorganic Chemistry,Condensed Matter Physics,General Materials Science

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