Laser Interference Lithography for Micro- and Nano-Fabrication: Design and Development of a Prototype for Industrial End-Users

 
9783639269369: Laser Interference Lithography for Micro- and Nano-Fabrication: Design and Development of a Prototype for Industrial End-Users

There is an increasing interest in nanoscience and nanotechnology due to the new physics and chemistry that are accessible on the nanoscale and because of the large potential for new products and devices that they provide. Therefore, the ability to fabricate structures on the nanoscale with high precision and in a wide variety of materials is a crucial issue for the development of the nanoscience and nanotechnology. Lithography and the other processes associated with it are the core of the nanotechnology revolution. One of the most promising techniques for the fabrication of structures on the nanoscale is Laser Interference Lithography (LIL). LIL, also known as holographic or interferometric lithography, is a well-established concept largely explored in lithography. However, a pulsed multi- beam LIL tool for nanoscale structuring of materials that can scale beyond laboratory prototypes into cost effective industrial processes is not yet defined. In this document, a versatile and automatic high-power multiple beam interference lithography system design capable of overcoming the limitations of manual setups is presented.

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About the Author:

Ainara Rodríguez obtained her Ph.D from the University of Navarra (Spain) in 2010. She works in the Microsensors Unit of CIC-Microgune and is mainly interested in the fields of photonics and laser processing of materials. Santiago M. Olaizola and Isabel Ayerdi are senior researchers in the Microelectronics Unit of CEIT.

Ainara Rodríguez obtained her Ph.D from the University of Navarra (Spain) in 2010. She works in the Microsensors Unit of CIC-Microgune and is mainly interested in the fields of photonics and laser processing of materials. Santiago M. Olaizola and Isabel Ayerdi are senior researchers in the Microelectronics Unit of CEIT.

Ainara Rodríguez obtained her Ph.D from the University of Navarra (Spain) in 2010. She works in the Microsensors Unit of CIC-Microgune and is mainly interested in the fields of photonics and laser processing of materials. Santiago M. Olaizola and Isabel Ayerdi are senior researchers in the Microelectronics Unit of CEIT.

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Book Description Book Condition: New. Publisher/Verlag: VDM Verlag Dr. Müller | Design and Development of a Prototype for Industrial End-Users | There is an increasing interest in nanoscience and nanotechnology due to the new physics and chemistry that are accessible on the nanoscale and because of the large potential for new products and devices that they provide. Therefore, the ability to fabricate structures on the nanoscale with high precision and in a wide variety of materials is a crucial issue for the development of the nanoscience and nanotechnology. Lithography and the other processes associated with it are the core of the nanotechnology revolution. One of the most promising techniques for the fabrication of structures on the nanoscale is Laser Interference Lithography (LIL). LIL, also known as holographic or interferometric lithography, is a well-established concept largely explored in lithography. However, a pulsed multi- beam LIL tool for nanoscale structuring of materials that can scale beyond laboratory prototypes into cost effective industrial processes is not yet defined. In this document, a versatile and automatic high-power multiple beam interference lithography system design capable of overcoming the limitations of manual setups is presented. | Format: Paperback | Language/Sprache: english | 298 gr | 220x150x11 mm | 212 pp. Bookseller Inventory # K9783639269369

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Book Description VDM Verlag Apr 2011, 2011. Taschenbuch. Book Condition: Neu. 222x152x23 mm. Neuware - There is an increasing interest in nanoscience and nanotechnology due to the new physics and chemistry that are accessible on the nanoscale and because of the large potential for new products and devices that they provide. Therefore, the ability to fabricate structures on the nanoscale with high precision and in a wide variety of materials is a crucial issue for the development of the nanoscience and nanotechnology. Lithography and the other processes associated with it are the core of the nanotechnology revolution. One of the most promising techniques for the fabrication of structures on the nanoscale is Laser Interference Lithography (LIL). LIL, also known as holographic or interferometric lithography, is a well-established concept largely explored in lithography. However, a pulsed multi- beam LIL tool for nanoscale structuring of materials that can scale beyond laboratory prototypes into cost effective industrial processes is not yet defined. In this document, a versatile and automatic high-power multiple beam interference lithography system design capable of overcoming the limitations of manual setups is presented. 212 pp. Englisch. Bookseller Inventory # 9783639269369

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Book Description VDM Verlag Apr 2011, 2011. Taschenbuch. Book Condition: Neu. 222x152x23 mm. Neuware - There is an increasing interest in nanoscience and nanotechnology due to the new physics and chemistry that are accessible on the nanoscale and because of the large potential for new products and devices that they provide. Therefore, the ability to fabricate structures on the nanoscale with high precision and in a wide variety of materials is a crucial issue for the development of the nanoscience and nanotechnology. Lithography and the other processes associated with it are the core of the nanotechnology revolution. One of the most promising techniques for the fabrication of structures on the nanoscale is Laser Interference Lithography (LIL). LIL, also known as holographic or interferometric lithography, is a well-established concept largely explored in lithography. However, a pulsed multi- beam LIL tool for nanoscale structuring of materials that can scale beyond laboratory prototypes into cost effective industrial processes is not yet defined. In this document, a versatile and automatic high-power multiple beam interference lithography system design capable of overcoming the limitations of manual setups is presented. 212 pp. Englisch. Bookseller Inventory # 9783639269369

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Book Description VDM Verlag Apr 2011, 2011. Taschenbuch. Book Condition: Neu. 222x152x23 mm. This item is printed on demand - Print on Demand Neuware - There is an increasing interest in nanoscience and nanotechnology due to the new physics and chemistry that are accessible on the nanoscale and because of the large potential for new products and devices that they provide. Therefore, the ability to fabricate structures on the nanoscale with high precision and in a wide variety of materials is a crucial issue for the development of the nanoscience and nanotechnology. Lithography and the other processes associated with it are the core of the nanotechnology revolution. One of the most promising techniques for the fabrication of structures on the nanoscale is Laser Interference Lithography (LIL). LIL, also known as holographic or interferometric lithography, is a well-established concept largely explored in lithography. However, a pulsed multi- beam LIL tool for nanoscale structuring of materials that can scale beyond laboratory prototypes into cost effective industrial processes is not yet defined. In this document, a versatile and automatic high-power multiple beam interference lithography system design capable of overcoming the limitations of manual setups is presented. 212 pp. Englisch. Bookseller Inventory # 9783639269369

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